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BREAKING NEWS: Timo Bernhard and Romain Dumas in the LMP1-Porsche, World Endurance Championship and 24 Hours of Le Mans

Stuttgart. The first two drivers to contest the top class of the sports car World Endurance Championship (WEC) and the Le Mans 24 hour race are confirmed.

Le Mans overall winners Timo Bernhard (Germany) and Romain Dumas (France) will take the wheel of the new LMP1 vehicle from Weissach in the 2014 season.

Already this year the two Porsche works drivers Bernhard and Dumas will commence testing the new Le Mans racer.

Timo Bernhard & Romain Dumas

Timo Bernhard & Romain Dumas

“Timo Bernhard and Romain Dumas are regarded as some of the fastest and most experienced sports car pilots in the world. I’m very pleased that we have these two men contesting the World Endurance Championship and the Le Mans 24 Hours for us from 2014”, says Wolfgang Hatz, Member of the Executive Board – Research and Development at Porsche AG.

“I particularly appreciate about the two is their competence as test drivers. For this reason the pair is already closely integrated in the development program of our new car and will embark on an intensive test schedule from the middle of this year”, says Fritz Enzinger, director LMP1-project.

 

Timo Bernhard & Romain Dumas in Silverstone

Timo Bernhard & Romain Dumas in Silverstone

Timo Bernhard comes from Porsche’s own junior development programme. In 1999, Porsche recognised the talent of the then 18-year-old and coached him in the Porsche Junior Team to become a professional race driver.

In 2002, Bernhard was signed on as a works driver and since then has notched up victories and championship titles all over the world. In 2010 he was voted “Race Driver of the Year” by Germany’s automobile club ADAC for his outstanding achievements. Bernhard is the only race driver to have clinched overall victory at all four of the most famous sports car classics.

He won the Le Mans 24 Hours in 2010, in 2003 the Daytona 24 Hours, the 12 Hours of Sebring in 2004, and a total of five times at the 24 hour race on the Nürburgring – another record.

Timo Bernhard & Romain Dumas in Silverstone

Timo Bernhard & Romain Dumas in Silverstone

Romain Dumas joined the circle of Porsche factory drivers in 2004. Previously he attracted attention in the Formula 3, Formula 3000, at international GT races as well as the Porsche Carrera Cup Deutschland.

He is one of the most experienced pilots at the 24 Hours of Le Mans. All together, Dumas has contested his favourite race at La Sarthe twelve times. With Timo Bernhard, he scored overall victory there in 2010 at the wheel of an Audi. Together, the pair also celebrated huge successes in the U.S. in the RS Spyder sports prototype.

In 2007 and 2008, the two Porsche works drivers convincingly clinched the title in the American Le Mans Series. Bernhard shared the cockpit with Dumas at four of his five wins at the Nürburgring 24 hour race. Moreover, in 2010 Dumas celebrated overall victory in Spa at the wheel of a Porsche 911.

Fritz Enzinger, director LMP1-project

Fritz Enzinger, director LMP1-project

SOURCE: Porsche AG Media Database

Communication Porsche AG
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VIDEO: PORSCHE 918 SPYDER WORKSHOP – Looking forward to this in 2013-2014 Santa Claus!

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shhhhhhhhh….Ho! Ho! Ho! don’t tell Mrs Claus, I’m thinking about trading in the sleigh for one of these for 2013! PORSCHE 918 SPYDER @ Barber Motorsports Park

Porsche 918 Spyder   YouTube.png2_Snapseed

Santa Claus has visited 918 Spyder Research and Development Centre in Weissach (Baden-Württemberg) making decisions for NEXT year’s RIDE!

Just an ordinary picture to tickle our cheekbones……

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Note..auto journalist Georg Kacher in the light blue
Amazing image of the assembly workshop of Porsche 918 Spyder prototypes. It shows nine.

For those who follow 918 Spyder, each news is very good. An image of the assembly workshop prototype 918 Spyder . Obviously, they are not all there, but still counted nine 918 prototypes. Some are equipped with supplied “Martini“, others recover 917 sets of prototypes involved in the 24 Hours of Le Mans in the past.

The place where all the 918 prototypes are…..

Vorhang auf  der Porsche 918 Spyder   DE   YouTube.png6_Snapseed

Power up: the Porsche 918 Spyder

The future is an exciting place, and here’s one of the people bringing it closer. Meet Dr Frank Walliser, who takes us behind the development of one of Porsche’s most thrilling leaps in innovation, the Porsche 918 Spyder.

Vorhang auf  der Porsche 918 Spyder   DE   YouTube.png4_Snapseed Vorhang auf  der Porsche 918 Spyder   DE   YouTube.png5_Snapseed

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The  final series of the 918 Spyder will be presented at the Frankfurt Motor Show in 2013 when the first deliveries are scheduled for the end of next year.

 

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Porsche 918 Spyder Prototype Successful Testing / lap time 7 mins 14 secs on the “Nürburgring-Nordschleife”

Press Release 19/09/2012

Porsche 918 Spyder-Prototyp auf der Nürburgring-Nordschleife

Stuttgart. On September 18th, in test drives on the “Nürburgring-Nordschleife”, a Porsche 918 Spyder prototype turned in a remarkable best time of just 07:14 minutes for the 20.6 km long circuit.

Porsche 918 Spyder-Prototyp auf der Nürburgring-Nordschleife

One year before its production launch, the plug-in hybrid super sports car from Porsche AG is already proving its superlative dynamic performance potential far surpassing all expectations placed in it. Dr. Frank Walliser, overall project leader for the 918 Spyder:

“By turning in a fabulous time of 07:14 minutes, the 918 Spyder prototype has already fully confirmed the viability of its future concept after just a few months on the road.”

Dr. Frank Walliser, Gesamtprojektleiter 918 Spyder

The lap time of the Porsche 918 Spyder prototype is one of the best ever clocked for street-legal vehicles with standard production tyres.

Porsche 918 Spyder-Prototyp auf der Nürburgring-Nordschleife

The course was only available to the development team from Weissach for one lap, and it had to be started from a standstill.

Porsche 918 Spyder-Prototyp auf der Nürburgring-Nordschleife

The plug-in hybrid super sports car with over 795 hp was equipped with production tyres from development partner Michelin as well as the optional “Weissach” package, which integrates modifications that boost driving performance.

Porsche 918 Spyder-Prototyp auf der Nürburgring-Nordschleife

SOURCE: Porsche AG Media Database

Product and Technology Communication
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Jörg Kerner appointed as new director of power train development at Porsche

Jörg Kerner, Director power train development

Change in power train development division

Stuttgart. With effect from October 2011, Jörg Kerner will be heading up the power train development division for Dr. Ing. h.c. F. Porsche AG, Stuttgart at the Weissach Development Centre. The 41-year-old succeeds Dr. Heinz-Jakob Neußer, who at the same time takes charge of power train development at the Volkswagen brand.

Jörg Kerner worked for Robert Bosch GmbH from 1986 to 2004 where his responsibilities included various Audi projects in the petrol engine control and application area. The engineering graduate joined Audi AG in 2004, where Jörg Kerner built up the engine and transmission electronics design, software and functional development division, managing it until 2009. The engine developer subsequently took over the power train electrification division at Audi.

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Go-ahead for the extension of the new R & D Porsche site in Weissach

Weissach R&D – Picture of site – (l.-r.): Walter Uhl, Chairman of Works Council of Porsche Weissach, Thomas Fritsch, Mayor of Mönsheim, Ursula Kreutel, Mayor of Weissach, Matthias Müller, Chairman of the Board of Management of Porsche AG, Wolfgang Hatz, Board member in charge of Research and Development of Porsche AG and Uwe Hück, Chairman of the Group Works Council of Porsche AG.

First cut of the spade in Weissach: start of extensive building work at the Development Centre

Stuttgart. With the symbolic first cut of the spade, Dr. Ing. h.c. F. Porsche AG, Stuttgart, today heralded the start of the extension of its Research and Development Centre in Weissach (Baden-Württemberg).

Research and Development Centre in Weissach (Baden-Württemberg)

The site is being enlarged through the addition of a highly modern design studio, a high-tech wind tunnel and an electronics integration centre. Porsche is investing around 150 million euro in this respect. Matthias Müller, Chairman of the Board of Management, welcomed Ursula Kreutel, Mayor of Weissach, Thomas Fritsch, Mayor of Mönsheim, Roland Bernhard, Chief Executive of the Böblingen District, and Karl Röckinger, Chief Executive of the Enz District, at the groundbreaking ceremony.

Research and Development Centre in Weissach (Baden-Württemberg)

“The extension of our Development Centre is a good, far-sighted investment in the future of Porsche”, said Matthias Müller, Chairman of the Board of Management of Porsche AG. “The expansion being made by Porsche in Weissach also represents a clear commitment to Baden-Württemberg as an industrial location.

” Uwe Hück, Chairman of the Group Works Council, added: “These investments which we agreed in July 2010 to safeguard the site – ‘Independence through competitive advantage’ – will not only protect the jobs of our permanent staff, but will actually increase the number of permanent jobs. This will strengthen the independence of Porsche.”

Research and Development Centre in Weissach (Baden-Württemberg)

The new wind tunnel will also enable the Stuttgart-based sports car manufacturer to cope with technological challenges in vehicle development in future.

“Good aerodynamics make a major contribution towards low fuel consumption and high performance – both of which are important aspects in implementing Porsche Intelligent Performance”, said Wolfgang Hatz, Board member in charge of Research and Development of Porsche AG.

The new electronics integration centre will combine segments which were previously spread over several buildings.

“Our objective is also to continue developing electric and hybrid technology. We are creating the ideal conditions for attaining this objective with our new electronics integration centre”, added Hatz.

“Thanks to Porsche, we have the highest per capita trade tax revenue in the whole of Germany. The town will also profit from the extension of the Development Centre”, said Ursula Kreutel, Mayor of Weissach with confidence. Thomas Fritsch, Mayor of Mönsheim, agreed with his fellow Mayor: “Porsche is a great addition for the surrounding towns. We are therefore now all the more delighted with the extension of the Research Centre.”

Research and Development Centre in Weissach (Baden-Württemberg)

In addition to the extension of the site, Porsche is starting a wide-ranging human resources campaign. In the first six months of 2011, the company recruited well over 100 new engineers. Over 100 new employees will also be appointed by the end of 2011 in order to support the around 3,400 staff currently working in Weissach.

The new offices and the design studio will probably be ready for occupation in summer 2013. The wind tunnel will be completed in the first six months of 2014.

SOURCE: Porsche AG Media Database

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Dirk Erat

 

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Porsche returns to Le Mans in 2014,Development program confirmed for LMP1 sports prototype

Porsche returns to Le Mans with a works-run LMP1 sports prototype. The first outing of the completely new developed race car is planned for the year 2014. With 16 overall victories, Porsche is the most successful manufacturer in Le Mans

Porsche 911 GT1

With 16 overall victories, Porsche is the most successful manufacturer in Le Mans. The most recent win was in 1998 with the Porsche 911 GT1.

Porsche 911 GT1

“Motorsport was always an essential part of the Porsche brand,” emphasizes

Matthias Müller, President of the Executive Board at Porsche AG

Porsche 911 GT1

“So for us it was only a matter of time before we returned as a factory to the top league of racing. Porsche’s successes in Le Mans are unrivaled. We want to follow up on this with the 17th outright victory.”

Porsche 911 GT1

With the RS Spyder sports prototype that was run with great success from 2006 to 2008 by the factory-backed Penske Racing team in the USA and to 2010 by several customer teams worldwide, Porsche has set the benchmark recently in the LMP2 category.

Porsche RS Spyder

“With the RS Spyder we proved that our motorsport engineers in Weissach are at the forefront,” says Wolfgang Hatz, Board Member for Research and Development at Porsche AG.

Porsche RS Spyder, 24h Le Mans 2009

Porsche RS Spyder, 24h Le Mans 2009

Porsche RS Spyder, 24h Le Mans 2009

Wolfgang Hatz, Board Member for Research and Development at Porsche AG

Porsche RS Spyder

“For instance, we were the first to run a high-revving race engine with direct fuel injection, DFI, setting new standards in performance and efficiency. Recently, with the 911 GT3 R Hybrid, we adopted a completely new drive technology for racing purposes and achieved a considerable reduction in consumption.”

Porsche RS Spyder

Hartmut Kristen, Head of Porsche Motorsport, is already prepared for one of the most challenging development programmes in the company’s history.

Hartmut Kristen, Head of Porsche Motorsport

“We’re looking forward to the task of developing new technologies and to continue on with the success of the Porsche RS Spyder. After the conclusion of our works-supported sports prototype programme in the American Le Mans Series we have kept up with the latest technological advances. Now we will begin with detailed research in order to evaluate the various concept alternatives for our new car. These obviously depend on how the regulations for the year 2014 look in detail. In principle, these regulations are interesting for us because the integration of our hybrid technology in the vehicle concept is one possible option.”

Hans Herrmann and Richard Attwood claimed the first overall victory for Porsche in 1970 with the legendary 917 short-tail.

    Porsche 917 Kurzheck Coupé
    Porsche 917 Kurzheck Coupé

The 16th and by now last overall win was secured by Laurent Aiello, Stéphane Ortelli and Allan McNish in 1998 with the 911 GT1. In the years 2008 and 2009, the Porsche RS Spyder sports prototype won the title in the LMP2 category.

SOURCE: Porsche AG Media Database
Please find the official trailer at www.porsche.com/lemans.
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Porsche’s magnificent triumph at the Nordschleife 24-Hour Race Nürburgring

Nürburgring 24 hour race


Stuttgart. It was one of the most exciting and dramatic 24 hour races at the Nürburgring.

And it finished with a triumph for Porsche: In front of 220,000 spectators lining the legendary Nordschleife, Porsche works drivers Marc Lieb (Germany), Timo Bernhard (Germany), Romain Dumas (France) as well as Lucas Luhr (Switzerland) won the 39th running of the long distance classic in the Eifel with the Porsche 911 GT3 RSR and relegated their strong opponents from BMW, Mercedes and Audi to finish down the field.


For Porsche and the Porsche Team Manthey, this marked the fifth victory at the traditional race in the last six years – likewise for Timo Bernhard.

With the Porsche 911 GT3 RSR – the world’s most successful GT race car of the last years – the Porsche quartet snatched the lead on Saturday at 23.25 hours and held on to it to the flag.

What followed were 16 hours and 35 minutes at the head of the field, 108 consistently fast and faultless laps under immense pressure on one of the toughest race tracks on earth – this speaks volumes about the reliability of the Porsche 911 GT3 RSR and for the skill of the pilots. The new distance record set with a total of 156 laps and 3,958.968 kilometres underlines the superb effort of the winners and their team.

“We already knew before the start that we could only win if we worked together as a team, from the drivers through to the mechanics. And this worked very well for the entire time,” Timo Bernhard said. Indeed, aside from the usual tensions on the track, there was just one truly critical situation – strangely enough in the pits.

 

Lucas Luhr: “During a pit stop the petrol pump didn’t work. Fuel simply didn’t come out. So we had to push our car back to another pump and in doing so lost almost a minute.”

The Porsche 911 GT3 R Hybrid also gave an impressive performance, even though its second start at the 24 hour classic did not yield the anticipated top result.

Fielded by Porsche Team Manthey with Porsche works drivers Joerg Bergmeister (Germany), Richard Lietz (Austria), Marco Holzer (Germany) and Patrick Long (USA), the innovative race car with its ground-breaking drive concept finished an impressive 28th after a breathtaking chase through the field, 17 laps behind the winner.

Showing its true potential, the 911 GT3 R Hybrid moved into the lead on Saturday about four hours after the start. But a broken flange in the differential sent it into the pits for repairs, which cost six laps to the leader. But the trouble wasn’t to stop there: After a good seven hours, the same problem struck again necessitating a second unplanned pit stop. This time repairs took 40 minutes. With a ten-lap gap to the front-runners, the 911 GT3 R Hybrid rejoined the race in position 105. Clocking lap times which were sometimes faster than those at the front, it ploughed through the field to rank 23rd.

However, on Sunday morning the vehicle’s charge was interrupted yet again: While lapping a slower competitor, Patrick Long was nudged and spun at high speed in the Flugplatz passage. In the pits, however, no damages to the vehicle were found.

Manned by Porsche factory pilot Wolf Henzler (Germany) as well as Peter Dumbreck (Great Britain), Martin Ragginger (Austria) and Sebastian Asch (Germany), the Porsche 911 GT3 R fielded by Falken Motorsports took up the race on intermediate tyres. This proved to be a good decision. Wolf Henzler made up several places before pitting after two laps once the rain had stopped to change to slicks. An engine change in the first quarter of the race robbed the team of all chances for a better result. At the flag, the Falken quartet occupied 49th. The swift lap times that the 911 GT3 R yielded after the long repair phase were, in this case, a poor consolation.

“It was somewhat frustrating to drive such great times and yet be so far down the field,” said Wolf Henzler. “Still, considering these times, the mood in the team is good. It gives us a lot of motivation. Despite everything, we’re taking home a wealth of experience from the Nürburgring.”

After a trouble-free early phase under difficult conditions, the Porsche 911 GT3 R, which Manthey Racing ran parallel to the Porsche 911 GT3 RSR, was taken out of the race after a good two hours. The team wanted to concentrate on just one car. A perfect strategy that was rewarded with victory. And as Timo Bernhard crossed the finish line with the Porsche 911 GT3 RSR, the Eifel at last showed its true sunny colours.

Result Nürburgring 24 hour race

1. Lieb/Bernhard/Dumas/Luhr (D/D/F/CH), Porsche 911 GT3 RSR, 156 laps
2. Müller/Farfus/Alzen/Lamy (D/BRA/D/P), BMW M3 GT, +4:23.7 seconds
3. Basseng/Fässler/Piccini/Stippler (D/CH/I/D), Audi R8 LMS, – 1 lap
4. Stippler/Hennerici/Haase/Winkelhock (D/D/D/D), Audi R8 LMS, – 1
5. Ekström/Scheider/Werner/Abt (S/D/D/D), Audi R8 LMS, – 2
6. Heyer/Jäger/Bleekemolen/Seyffarth (D/D/NL/D), Mercedes-Benz SLS, – 3
7. Arnold/Margaritis/Brück/Frankenhout (D/D/D/NL), Mercedes-Benz SLS, – 3
8. Farnbacher/Simonsen/Seefried/Melo (D/MC/D/I), Ferrari F 458, – 4
9. Abbelen/Schmitz/Kentenich/T. Bergmeister (D/D/D/D), Porsche 911 GT3 R, – 4
10. Weiss/Kainz/Jacobs/Krumbach (D/D/D/D), Porsche 911 GT3 R, – 5
28. J. Bergmeister/Lietz/Holzer/Long (D/A/D/USA), Porsche 911 GT3 R Hybrid, – 17
49. Henzler/Ragginger/Dumbreck/Asch (D/A/GB/D), Porsche 911 GT3 R, – 24

SOURCE: Porsche AG Media database

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24-Hour Race Nürburgring – Interim report after 6:30 hours – problems for the 911 GT3 R Hybrid

Porsche is second best – problems for the 911 GT3 R Hybrid

Porsche 911 GT3 R Hybrid, Porsche Team Manthey: Jörg Bergmeister, Richard Lietz, Marco Holzer, Patrick Long

Stuttgart. The Porsche 911 GT3 RSR by Manthey Racing runs in the 24-hour Nürburgring race continues at the forefront.

After six hours between the Porsche works driver Marc Lieb (Germany), Timo Bernhard (Germany) and Romain Dumas (France) together with Lucas Luhr (Switzerland) in second place. Previously they had to not quite five hours to the forefront of the field and up to their pit stop four laps claimed the lead.


The Porsche 911 GT3 R Hybrid rendered the endurance classic in the Eifel also been leadership. After just over four hours of the Porsche Manthey used innovative racing car was the Porsche factory drivers Jörg Bergmeister (Langenfeld), Richard Lietz (Austria), Marco Holzer (Lochau) and Patrick Long (USA) two laps ahead, before the give guidance for a scheduled pit stops needed.

After presumably at a contact with a competitor, a flange of the differential was broken, had the 911 GT3 R Hybrid to the pits for repairs and lost by six laps on the top.


At the Porsche 911 GT3 R, the shares Porsche works driver Wolf Henzler (Germany) and Peter Dumbreck (UK), Martin Ragginger (Austria) and Sebastian Asch (Germany), the engine was replaced. Parallel to the Manthey Racing Porsche 911 GT3 RSR 911 GT3 R was used for a smooth start-up phase after two hours taken out of the race as scheduled, so the team can concentrate on one car.

Voices of the driver

Martin Ragginger (No. 44 Porsche 911 GT3 R, Falken Motorsports):

“We were really good at racing and have in the initial phase is not too much risk. Too bad that we have now lost so much time. But we go further and see how far we can still come forward. “

Timo Bernhard (No. 18 Porsche 911 GT3 RSR, Manthey Racing):

“My stint was no problem. It was mainly in the central part of the route many places where yellow flags were waved and I had to drive slowly in order to not risk a fine sport. “

Lucas Luhr (# 18, Porsche 911 GT3 RSR, Manthey Racing):

“At the pit stop the fuel pump did not work the Nurburgring. There simply was no gasoline. So we had to push the car to another column and have thus lost almost a minute. “

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SOURCE: Porsche Media database
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Nürburgring 24 hour race – Interim report after 2 hours-Porsche 911 GT3 R Hybrid in second place

Porsche 911 GT3 R Hybrid in second place

Porsche 911 GT3 R Hybrid: Jörg Bergmeister, Richard Lietz, Marco Holzer, Patrick Long

Porsche 911 GT3 R, Haribo Team Manthey (8): Richard Westbrock, Christian Menzel, Mike Stursberg, Hans Guido Riegel – Porsche 911 GT3 R Hybrid (9): Jörg Bergmeister, Richard Lietz, Marco Holzer, Patrick Long

Stuttgart. The Porsche teams have made a good start to the Nürburgring 24 hour race.

Porsche 911 GT3 R, Haribo Team Manthey: Richard Westbrock, Christian Menzel, Mike Stursberg, Hans Guido Riegel

After just over two hours and 17 laps on the legendary Eifel circuit, the innovative Porsche 911 GT3 R Hybrid fielded by the Porsche Team Manthey lies in second place.

24-Stunden-Rennen Nürburgring

24-Stunden-Rennen Nürburgring

Start driver was Joerg Bergmeister (Germany), who shares the cockpit with his Porsche works driver colleagues Richard Lietz (Österreich), Marco Holzer (Lochau) und Patrick Long (USA). The Porsche 911 GT3 RSR of Manthey Racing with Porsche factory pilots Marc Lieb (Germany), Timo Bernhard (Germany) and Romain Dumas (France) as well as Lucas Luhr (Switzerland) follow directly behind in third place.

Porsche 911 GT3 R, Pinta Racing (27): Michael Illbruck, Manuel Lauck, Jörg van Ommen, Altfrid Heger – Porsche 911 GT3 Cup S, H&R Spezialfedern (31): Jürgen Alzen, Artur Deutgen, Klaus Ludwig, Sascha Bert

Sitting 12th is the Porsche 911 GT3 R fielded by the Haribo Team Manthey with Richard Westbrook (Great Britain), Christian Menzel (Germany), Mike Stursberg (Germany) and Hans Guido Riegel (Germany).

24-Stunden-Rennen Nürburgring

The Porsche 911 GT3 R of Falken Motorsports, manned by Porsche works driver Wolf Henzler (Germany) as well as Peter Dumbreck (Great Britain), Martin Ragginger (Austria) and Sebastian Asch (Germany) currently ranks 15th.

Quotes from the drivers

Marc Lieb (No. 18, 911 GT3 RSR, Manthey Racing):

“In the first lap it was rather difficult on slicks, but from the second lap onwards it has proved to be the right choice. Unfortunately I lost a lot of time behind a competitor who was zig-zagging over the track to prevent me from passing although I was faster. Otherwise, the car’s running well.”

Joerg Bergmeister (No. 9, 911 GT3 R Hybrid, Porsche Team Manthey):

“The first two laps with slicks on the wet surface were a little critical. But then the ideal line dried and from then on the driving was superb. We obviously had a little luck with our decision not to start on wet tyres, because it could have started to rain again.”

Wolf Henzler (No. 44, 911 GT3 R, Falken Motorsports):

“We decided to start on intermediate tyres and that was good in the beginning, I made up some places. But on lap two my right front tyres began to scrape and there was a little smoke. To be on the cautious side I drove into the pits. But basically everything was okay, we changed to slicks and I rejoined the race. It drizzled for a short spell and the track became slippery again. The traffic is heavy, above all it’s hard to anticipate what the many slower drivers are going to do. It was agreed that they should blink to show the faster ones what their intentions are. But that happens seldomly.”

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Source/photos: Porsche AG database

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Best Porsche in the fourth grid row – Nürburgring 24 hour race

Nürburgring 24 hour race

Porsche 911 GT3 R Hybrid, Porsche Team Manthey: Jörg Bergmeister, Richard Lietz, Marco Holzer, Patrick Long

Stuttgart. As the best-placed Porsche team, Porsche works drivers Marc Lieb (Germany), Timo Bernhard (Germany) and Romain Dumas (France) take up the 24 hour race on Saturday with Lucas Luhr (Switzerland) from the fourth grid row. At the wheel of Manthey Racing’s Porsche 911 GT3 R, they concluded the final qualifying for the long distance classic in the Eifel on eighth place.

Motorsports / 24h-Rennen Nuerburgring Nordschleife, Motorsports / 24h-Rennen Nuerburgring Nordschleife – Porsche 911 GT3 RSR, Manthey Racing: Marc Lieb, Timo Bernhard, Romain Dumas, Lucas Luhr

Motorsports / 24h-Rennen Nuerburgring Nordschleife, 18, Manthey Racing GmbH III, Porsche – 911 GT3 R, Marc Lieb, Timo Bernhard, Romain Dumas, Lucas Luhr

Porsche 911 GT3 R Hybrid, Porsche Team Manthey: Marco Holzer
Motorsports / 24h-Rennen Nuerburgring Nordschleife,9, Porsche Team Manthey, Porsche – 911 GT3 R, E1-XP Hybrid, Joerg Bergmeister, Richard Lietz, Marco Holzer, Patrick Long

The further-developed Porsche 911 GT3 R Hybrid (Version 2.0) with drivers Joerg Bergmeister (Germany), Richard Lietz (Austria), Marco Holzer (Germany) and Patrick Long (USA) posted the eleventh quickest time. The Porsche works drivers were able to improve on their first qualifying session by three places, but the gap to the top was just over seven seconds.
Motorsports / 24h-Rennen Nuerburgring Nordschleife, 11 Manthey Racing GmbH III, Porsche – 911 GT3 R, Marc Lieb, Timo Bernhard, Romain Dumas, Lucas Luhr

On the 16th grid spot are Marc Lieb, Timo Bernhard, Romain Dumas and Lucas Luhr in the Porsche 911 GT3 RSR that the Manthey Racing team fields parallel to the 911 GT3 R.

Directly behind them is Porsche factory pilot Wolf Henzler (Germany) as well as Peter Dumbreck (Great Britain), Martin Ragginger (Austria) and Sebastian Asch (Germany) in the Porsche 911 GT3 R of Falken Motorsports on position 17.

Comments from the drivers

Marc Lieb (No. 11/18, Manthey Racing):

“I drove the GT3 today but didn’t manage to find an optimal lap because I had to wait too long at the pit lane exit and was therefore too late. All in all I have to say that I couldn’t do much more. But we now have 24 hours ahead of us.”

Timo Bernhard (No. 11/18 Manthey Racing):

“I only conducted function tests after changing crucial components like the engine and gearbox. It was all good. The car feels great.”

Romain Dumas (No. 11/18, Manthey Racing):

“Our timing wasn’t perfect. When we wanted to push, it started to rain. But we’ve made huge progress in our set-up and that was our main goal for today. It’ll be a long race and anything can happen.”

Joerg Bergmeister (No. 9, Porsche Team Manthey):

“We obviously made the right decision and went for top times when it was dry right from the start. It worked and I got in a clear lap. Our car is handling very well.”

Richard Lietz (No. 9, Porsche Team Manthey):

“Overnight we changed the engine and gearbox and ran in the new parts. The conditions were quite difficult out there because sections of the track were either dry, damp or wet.”

Wolf Henzler (No. 44, Falken Motorsports):

“First we had to run in all the new parts for the race, the engine, gearbox, brake pads and so on. When I wanted to go out for my fast lap it began to rain. At the entrance to the Nordschleife I began to slide on all four wheels and had to abandon my lap. When we tried again towards the end of the session the track was still partly wet and then I encountered a car sideways in front of me and had to brake hard. It’s a shame, I could have done better.”

The 24 hour race takes off on Saturday at 16.00 hours. TV station Sport1 intermittently broadcasts more than 13 hours of the race live on Saturday (from 15.45 hours) and Sunday (17.00 hours). A one-hour highlight programme is televised on Sunday at 22.30 hours.

Result Qualifying
1. Farnbacher/Simonsen/Seefried/Melo (D/MC/D/I), Ferrari F 458, 8:23.764 minutes
2. Mamerow/Hahne/Kaffer (D/D/CH), Mercedes-Benz SLS, + 1.897 seconds
3. Heyer/Jäger/Bleekemolen/Seyffarth (D/D/NL/D), Mercedes-Benz SLS, + 3.016
4. Müller/Werner/Adorf/Lamy (D/D/D/P), BMW M3 GT, + 3.666
5. Müller/Farfus/Alzen/Lamy (D/BRA/D/P), BMW M3 GT, +4.151
6. Arnold/Margaritis/Brück/Frankenhout (D/D/D/NL), Mercedes-Benz SLS, + 4.503
8. Lieb/Luhr/Bernhard/Dumas (D/CH/D/F), Porsche 911 GT3 R, + 5.027
11. Bergmeister/Lietz/Holzer/Long (D/A/D/USA), Porsche 911 GT3 R Hybrid, + 7.087
16. Lieb/Bernhard/Dumas/Luhr (D/D/F/CH), Porsche 911 GT3 RSR, + 8.315
17. Henzler/Dumbreck/Ragginger/Asch (D/GB/A/D), Porsche 911 GT3 R, + 8.485

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Source: Porsche AG Media database
Public Relations and Media
Motor and Sports Press

 

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PORSCHE VIDEO: Cayman S Black Edition with more power and comprehensive equipment package

Press Release 06/05/2011

Exclusive special edition of the Porsche mid-engine coupé

Cayman S Black Edition with more power and comprehensive equipment package

Stuttgart. The next step up from the Cayman S is known as the Cayman S Black Edition: Starting in July 2011, Dr. Ing. h.c. F. Porsche AG, Stuttgart, is bringing the mid-engine coupé to market in a special edition limited to 500 units boasting even better performance and especially lavish equipment specification.

The Cayman S Black Edition is powered by a 3.4 litre six-cylinder boxer engine with power output increased by 10 hp (7 kW) to 330 hp (243 kW) at 7,400 rpm (an additional 200 rpm). The maximum torque remains unchanged at 370 Newton metres at 4,750 rpm.

The extra power feeds directly through into the performance of the all black two-seater. The acceleration times from nought to 100 km/h (62 mph) are improved by a tenth of a second to 5.1 seconds with the six-gear manual transmission and to 5.0 seconds with the optional Porsche Doppelkupplungsgetriebe (PDK) respectively. A mere 4.8 seconds are required if the Launch Control is activated on the Sport Chrono package, available as an option.

The Cayman S Black Edition’s top speed is two kilometres per hour (1.24 mph) faster than that of the Cayman S – 279 km/h (173 mph) with the manual transmission and 277 km/h (172 mph) with the PDK respectively.

The Cayman S Black Edition is not just more sportily agile in terms of its longitudinal dynamics but laterally as well. Among other factors, this is attributable to the Boxster Spyder wheels in black, which with a diameter of 19 inches are not just one inch bigger than the standard Cayman S wheels but are also half an inch wider than the optional 19 inch wheels on the Cayman S. The tyre sizes fitted are 235/35 ZR 19s on the front axle and 265/35 ZR 19s on the rear axle.


With its comprehensive and particularly high-quality equipment, the Cayman S Black Edition also caters for exceedingly exacting demands. For example, Bi-Xenon headlights with dynamic cornering lights and LED daytime running lights are just as much part of the basic specification as are automatic anti-dazzle interior and exterior mirrors with integrated rain sensor. Driver and front seat passenger sit on black partial leather seats with Porsche crest on the headrests; climate control ensures a comfortable temperature. The driver pilots the Cayman Black Edition by means of a Sport Design steering wheel, the cruise control makes driving at constant speed a more comfortable and economical experience.

The colour scheme of the limited edition sports coupé is consistent to the smallest detail: the dashboard trim is black as are the gear lever/selector trim and the instrument dials in the instrument cluster.

The door entry guards emblazoned with the lettering “Black Edition” are made of stainless steel; the glove compartment lid bears the badge proclaiming the limited edition status.

Equipped with Sound Package Plus, the Cayman S Black Edition’s infotainment systems are controlled via Porsche Communication Management (PCM).

This also includes, for example, the navigation module and universal audio interface (AUX, USB, iPod). Mobile phone integration is already enabled. In all, the Cayman S Black Edition features the Porsche Comfort, Infotainment and Design packages, offering a price reduction into the bargain.

With country-specific equipment, the Cayman S Black Edition costs 67,807 euro in Germany including VAT.

SOURCE: PORSCHE AG DATABASE

 

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VIDEO: Porsche lines up with an even more efficient 911 GT3 R Hybrid – Nürburgring

Porsche Hybrid GT3 R beim freien Training der VLN auf der Nordschleife 29.04.2011

Stuttgart. The development of the Porsche 911 GT3 R Hybrid 2.0 is running at full revs.

This Saturday, April 30th, the further-developed version of the innovative Hybrid race car contests round two of the Nürburgring Long Distance Championship (VLN).

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Another test under race conditions is planned at the fourth VLN round on 28 May.

At the race debut of the modified version of the 911 GT3 R Hybrid on 30th April, Porsche works drivers Joerg Bergmeister (Germany),

Comentario: Joerg Bergmeister/Porsche Hibrido.
Foto: AmigosRacing
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Marco Holzer (Germany)

Comentario: Marco Holzer – Johan Koning.
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and Patrick Long (USA) share driving duties in the orange and white ‘race lab’.

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At the second race meeting in late May, Holzer and Long join forces with Richard Lietz (Austria) to pilot the Hybrid-911.

24h Nürburgring, Nürburgring 24 hour race

Porsche takes up the Nürburgring 24 hour race on 25 June with a further developed version of the Porsche 911 GT3 R Hybrid.

So, what’s been done with this latest Porsche 911 Hybrid race car?

Priority of the development was given to the improvement of efficiency through the targeted optimisation of hybrid components, which also resulted in a 20 percent weight reduction. Version 2.0 of the 911 GT3 R Hybrid is intended to achieve the same lap times as its predecessor but with less fuel consumption.

The general layout of the hybrid was adopted from the 2010 model. A portal axle with two electric motors drives the front wheels and supplements the four-litre, depending on the balance of performance classification approximately 470 hp, six-cylinder boxer engine at the rear. The output of both electric motors has increased from 60 to 75 kilowatts each. For seconds at a time, pilots now have almost an additional 200 hp at their disposal with the 911 GT3 R Hybrid 2.0.

Depending on the programming, this power is automatically activated through use of the throttle pedal. Moreover, pilots can manually call up this extra power, for instance when overtaking.

The electric flywheel accumulator, with its rotor spinning up to 40,000 rpm and stor-ing energy mechanically as rotational energy, is now housed with the other hybrid components in a carbon fibre safety cell on the passenger’s side.

At first glance, the new GT3 R Hybrid is clearly distinguishable from the 2010 model. Thanks to the optimisation of the hybrid system’s high voltage components, the large louvres in front of the rear fenders were no longer necessary. This reduces drag and also lowers fuel consumption. All in all, the weight of the vehicle decreased from 1,350 to 1,300 kilograms.

“We’ve collected a great deal of information from our races on the Nürburgring, at the ALMS race at Road Atlanta in the USA, as well as from the ILMC race on China’s Zhuhai circuit, which was an invaluable help for the further development of our racing laboratory,” says Hartmut Kristen, head of Porsche motorsport.

“The emphasis of our work was on improving efficiency. That means we want to keep the lap times consis-tent with 2010 but use less energy, hence less fuel. In this way, we support future developments of road-going, sporting hybrid vehicles.”

The cockpit of the 911 GT3 R Hybrid has also been completely revised. Most of the displays and controls have moved to the steering wheel. Drivers can operate the rest of the functions via backlit buttons now situated on the centre console.

Priority was placed on the ergonomics and the clear layout for pilots – particularly in darkness.

The new 911 GT3 R Hybrid is a perfect example of the ‘Porsche Intelligent Performance’ philosophy, a principle found in every Porsche: More power on less fuel, more efficiency and lower CO2 emissions – on the race track and on the road.

Source: Porsche

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PORSCHE: 80 years of Porsche Designs – Porsche Engineering – Pioneering Technology and Trailblazing Innovations

Porsche Museum special exhibition
“Porsche Engineering – 80 years of Porsche design” Webspecial

For the Porsche Museum in Stuttgart-Zuffenhausen, the 80th anniversary of the Porsche engineering office founded in 1931 is one of the central themes of 2011.

From 7 July to 28 August 2011, the special exhibition “Porsche Engineering – 80 years of Porsche design” will be paying tribute to the most important and interesting third-party client developments of the past eight decades.

On display will be approximately 20 special exhibits extending from the development of entire vehicles via engines and gearboxes to remarkable industrial projects of the present day.

The ten third-party client vehicle developments include a 1931 vintage Wanderer saloon, the legendary Auto Union Grand Prix racing car and the Audi Sport Quattro S1 with the Porsche Doppelkupplungsgetriebe (PDK) driven by Walter Röhrl.

         The Porsche Museum is open Tuesday to Sunday from 9:00 a.m. to 6:00p.m.

For further information please visit www.porsche.com/museum

Porsche Engineering - 80 years of Porsche contract development

On 25 April 1931 Ferdinand Porsche founded an engineering office called “Dr. Ing. h.c. F. Porsche Limited, construction and consulting for engine and automobile manufacturing” (Dr. Ing. h.c. F. Porsche Gesellschaft mit beschränkter Haftung, Konstruktion und Beratung für Motoren- und Fahrzeugbau). Porsche Engineering, contract development by Porsche, thus dates back to the oldest predecessor company of today’s Porsche AG and for more than 80 years has developed customised solutions on behalf of automotive manufacturers and suppliers from the automotive industry, but also for other industrial companies from around the world.

Discover the milestones of Porsche history and join Porsche in taking on the challenges of the future.

History

History

ServiceService

Porsche MuseumSpecial exhibition Porsche Museum

Stuttgart. Dr. Ing. h.c. F. Porsche AG, Stuttgart, has been the leading manufacturer of premium sports cars for more than six decades. However, the historic roots of the Porsche brand go back much further than that. When Ferry Porsche built the legendary Type 356 in 1948, he and his engineers were able to look back on a wealth of comprehensive technological experience.

Back on 25th April 1931, Ferdinand Porsche founded and registered a design bureau named “Dr. Ing. h.c. F. Porsche Gesellschaft mit beschränkter Haftung, Konstruktion und Beratung für Motoren- und Fahrzeugbau” in Stuttgart.

Since then, the Porsche company has experienced many highs and lows and has grown from a small design bureau to a world famous manufacturer of sports and racing cars. This success story is based on decades of development experience, stretching far beyond just building sports cars. Over an 80 year period, Porsche has built up a reputation as one of the best known and multi-faceted engineering service providers in the world. The tradition of customer development started by Ferdinand Porsche in 1931 is still successfully continued today by Porsche Engineering Group GmbH, based in Weissach.

Porsche Engineering carries out development work on behalf of car manufacturers and suppliers, as well as companies from other sectors, combining the skills of Porsche as a series manufacturer, technology company and engineering service provider and making these available to third parties.

The 80th anniversary of the founding of the Porsche design bureau in 1931 is one of this year’s central themes for the Porsche Museum in Stuttgart-Zuffenhausen. From 21st June to 11th September 2011 the special exhibition entitled “Porsche Engineering – 80 Years of Porsche Designs” will honour the most important and interesting customer developments from the last eight decades. It will display around 20 special examples ranging from whole vehicle developments, through engines and gearboxes to extraordinary industrial projects in the present. The ten vehicle customer developments on display include a Wanderer Limousine from 1931, the legendary Auto Union Grand Prix racing car and the Audi Sport Quattro S1 with Porsche dual clutch gearbox (PDK). The Porsche Museum is open from Tuesday to Sunday, from 9 am to 6 pm. Further information is available on the internet from www.porsche.com/museum.

80 years of Porsche designs

80 years Pioneer Services

Discover the history of Porsche customer growth in the Webspecial.

For more than six decades, Dr. Ing. h.c. V. Porsche AG, Stuttgart, has enjoyed a reputation as a leading manufacturer of sporty premium cars. But the Porsche brand has much deeper historical roots. When Ferry Porsche built the legendary Type 356 in 1948, he and his engineers were able to draw on a comprehensive trove of technical experience.As long ago as 25 April 1931, Ferdinand Porsche had established an engineering office in Stuttgart under the name “Dr. Ing. h.c. F. Porsche Gesellschaft mit beschränkter Haftung, Konstruktion und Beratung für Motoren- und Fahrzeugbau“, (“Dr. Ing. h.c. F. Porsche Ltd., Design and Consultancy Company for Engine and Vehicle Production”) and had it entered in the trade register.

Since then, the Porsche company has experienced many ups and downs and grown from a small engineering office into a manufacturer of sports and racing cars that is known throughout the world. This success story is based also on decades of development experience extending far beyond sports car construction. Over an eighty-year period, Porsche has acquired the reputation as one of the world’s most illustrious and versatile engineering service providers. The tradition begun by Ferdinand Porsche in 1931 of third-party client development has been successfully carried on to this very day by the Porsche Engineering Group GmbH with its headquarters in Weissach. Porsche Engineering develops on behalf of automotive manufacturers and suppliers but also for companies from other sectors, bundling the know-how of the manufacturer, technology company and engineering service provider that is Porsche and making this available to third parties.

Ferdinand Porsche the automotive designer

The name Porsche has been associated with pioneering innovations in automotive engineering since the beginning of the last century. Ferdinand Porsche had been busy designing and developing his first cars as far back as 1896. The first fruit of this endeavour was an electric vehicle known as the “Lohner-Porsche” driven by steered wheel hub motors that caused a sensation at the Paris World Exhibition in 1900. This was soon followed by ever more impressive proof of just how innovative Ferdinand Porsche was. A racing car boasting four wheel hub electric motors became the world’s first all-wheel drive passenger car, brilliant also for having four-wheel brakes. No less visionary was Ferdinand Porsche’s next idea: Again in 1900 he combined his battery-powered wheel hub drive with a petrol engine – the principle of the serial hybrid drive had been born.

With this first functional, full-hybrid car in the world, the “Semper Vivus” (“always alive”), Ferdinand Porsche had entered uncharted territory. In this vehicle, two generators twinned with petrol engines formed a single charging unit, simultaneously supplying electricity to wheel hub motors and batteries. As a full hybrid concept, the “Semper Vivus” was also able to cover longer distances purely on battery power until the combustion engine had to be engaged as a charging station. To save weight and create space for a petrol engine, Ferdinand Porsche used a comparatively small battery in the “Semper Vivus” with a mere 44 cells. In the middle of the vehicle he installed two water cooled 3.5 hp (2.6 kW) DeDion Bouton petrol engines for generating electricity, driving two generators, each producing 2.5 hp (1.84 kW). Both engines operated independently of one another, each delivering 20 amps with a voltage of 90 volts. The electricity generated by the dynamos initially flowed to the wheel hub motors, with the surplus power being forwarded to the batteries. An additional special side effect was that it was possible to use the generators as electric starter motors for the petrol engines by reversing the direction of rotation. Starting as far back as 1901 as the Lohner-Porsche “Mixte” and from 1906 onward as the “Mercedes Electrique”, Ferdinand Porsche brought his hybrid drive to the start of volume production.

 Ferdinand Porsche in the Lohner-Porsche

This was followed in 1906 by the next step in Ferdinand Porsche’s career. At the tender age of only 31 he landed the position of Technical Director at Austro Daimler in Wiener Neustadt, giving him product responsibility for one of Europe’s leading automotive companies. One of the greatest successes of this era was the so-called “Prinz-Heinrich Car”, in which the Austro-Daimler works team won the first three places in the 1910 running of the highly regarded Prinz-Heinrich Race. In the guise of the Austro-Daimler “Sascha”, he developed a small car which, thanks to its excellent power-to-weight ratio prevailed against its larger displacement competitors in the 1922 Targa Florio, notching up no fewer than 43 racing victories in total.

In 1923 Ferdinand Porsche moved to the Daimler engine company in Stuttgart-Untertürkheim as Technical Director. There, in addition to the Type 8/38 midsized model and the first eight cylinder engine Mercedes-Benz, the “Nürburg” Type 460, it was first and foremost the supercharged sports and racing cars that further consolidated his worldwide reputation as an automotive designer. The sports and racing cars developed under his guidance with the abbreviations “S” (Sport), “SS” (Super Sport) and “SSK” (Super Sport Kurz, or short) ranked among the most coveted cars of their time. In January 1929 he left Daimler-Benz AG. Following a short interlude at the Austrian Steyr works, at the end of 1930 he returned to Stuttgart and opened an engineering office.

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Ferdinand Porsche at the office

The founding of the Porsche engineering office

The “Dr. Ing. h.c. F. Porsche Gesellschaft mit beschränkter Haftung, Konstruktion und Beratung für Motoren- und Fahrzeugbau“ was entered in the Stuttgart trade register on 25 April 1921, at the height of the world economic crisis. In addition to Ferdinand Porsche, who contributed 24,000 Reichsmarks to the limited company’s share capital, his son-in-law Anton Piëch and Adolf Rosenberger also invested 3,000 Reichsmarks each as executive partners. From the outset, the work undertaken by the initial twelve strong team around Ferdinand Porsche spanned the entire gamut of motor vehicle technology. Legendary cars such as the Auto Union Grand Prix racing car or the Volkswagen “Beetle” were to emerge from this Stuttgart engineering office in the years that followed. Porsche’s workplace progressed to be one of the most important seedbeds of automotive technology, at the same time preparing the ground for mass car ownership in Germany.

As early as 1931, Porsche designed a six cylinder average mid-size saloon for the Chemnitz car manufacturer Wanderer as well as a new in-line eight cylinder engine. This was followed by a swing axle for the Horch-Werke in Zwickau and an air-cooled five-cylinder radial engine designed for the Phänomen-Werke in Zittau, intended for use in trucks. In addition, the engineering office developed a small car for Zündapp GmbH, which with its rear-engine, rigid tubular backbone chassis and transmission mounted forward of the rear axle was to prove to be decisive for the Volkswagen that came later. The torsion bar suspension patented on 10 August 1931 and used in international automotive manufacturing over many decades is also held to be a milestone in automotive history.

In the spring of 1933, Ferdinand Porsche was commissioned by Auto Union in Saxony to develop the Grand Prix racing car. The moment the contract was signed, the Porsche team led by senior engineer Karl Rabe began work on the Auto Union P racing car (P for Porsche), configured as a mid-engined vehicle. The first test drives took place as early as November 1933 and in the very first racing season in 1934 this vehicle set three world records and won three international Grand Prix races in addition to several hill climb races. Between 1934 and 1939, with drivers such as Bernd Rosemeyer, Hans Stuck or Tazio Nuvolari, the constantly refined Auto Union racing car became one of the most successful pre-war era racing cars . Its technical mid-engine concept proved to be a trendsetter for all modern racing cars and is used to this very day in Formula One.

In addition to developing racing cars, the engineering office had been equally hard at work since 1933 on the design of a low-cost small car commissioned by the NSU works – an idea that was also exercising other car designers such as Belá Barényi or Hans Ledwinka against the backdrop of the world economic crisis. When Ferdinand Porsche began work on designing the Type 32 compact car, this was already the seventh small car design of his career. A number of prototypes of this vehicle type were built, which with the air-cooled, flat-four, rear-mounted engine and Porsche torsion bar suspension exhibited distinct similarities with the later Volkswagen Beetle. The “Memorandum on the construction of a German people’s car” (Volkswagen) that he presented to the Reich Transport Ministry on 17 January 1943 was to prove critical to the breakthrough of the small car concept. Shortly thereafter, on 22 June 1934, he received the official order from the RDA, the “Reichsverband der Deutschen Automobilindustrie” (German Reich Automobile Industry Association) to design and build Volkswagen prototypes that were assembled in the garage of his Porsche villa in the north of Stuttgart in 1935.

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Ferdinand Porsche and Auto Union GP

Contrary to the initial idea of having the Volkswagen built jointly by Germany’s car manufacturers, the Reich government decided in 1936 to build an independent Volkswagen plant, the planning of which was entrusted to Dr Ferdinand Porsche. Since the incorporation of the “Gesellschaft zur Vorbereitung des Deutschen Volkswagens mbH” (Gezuvor) in May 1937, a company established to pave the way for the construction of the German “people’s car”, Porsche, as one of three Managing Directors, was officially responsible for technology and the planning of the future Volkswagen plant and, accompanied by his son Ferry, travelled to the United States of America to find out about modern production methods.

In addition to the Volkswagen project, the Porsche engineering office, located in the Zuffenhausen district of Stuttgart since 1938, was working on numerous other development contracts from the automotive industry. For Daimler-Benz AG work included the development of technical engine components for the Mercedes “silver arrows” between 1937 and 1939 as well as the design of the Type 80 high-speed car for an attempt on the land speed record. The Type 110 compact agricultural tractor with an air-cooled two cylinder engine, developed for the “Deutsche Arbeitsfront” (German Labour Front) (DAF), was the model for the later “People’s Tractor” and the Porsche diesel tractor produced after the Second World War.

In 1938 the Volkswagen works awarded the Porsche engineering office the contract to develop a racing car based on the Volkswagen Type 60, which was to take its place on the grid for a planned long distance race from Berlin to Rome as a promotional stunt for the “KdF car” (“Strength through Joy” car). By the spring of 1939, the Porsche engineers had developed three sports car coupés under the in-house designation Type 64, for the “Non-stop speed endurance test” scheduled for September. As much of the more than 1500 kilometre long race was to be on the new motorways, particular attention was lavished on the vehicle’s aerodynamics. With a sleek streamlined aluminium body, shrouded wheel wells and a modified VW horizontally opposed engine, the would-be record-breaking car, weighing a mere 600 kg, topped 140 km/h (87 mph). When the outbreak of the Second World War prevented the race from being held, the Porsche engineering office used the completed sports cars as fast touring cars, achieving average speeds in excess of 130 km/h (81 mph) on long business trips.

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After the outbreak of the Second World War, other types of vehicle were spun off from the Volkswagen for military use. In addition to the Type 81 “VW Kastenwagen” the company, trading as Porsche KG since the end of 1937, developed the Type 62 “KdF off-road vehicle”, the Type 82, known as the “VW Kübelwagen” and the all-wheel drive Type 87 and Type 166 “VW Schwimmwagen” amphibious vehicle, among others. At the end of 1939, the Army’s Armaments Office also awarded the Porsche engineering office the development contract for a medium tank, the design of which however was temporarily shelved owing to the need for heavier types of tank. Initially employed by the Armaments Ministry as a consultant, Ferdinand Porsche headed the Tank Commission from 1941 to 1943. In 1942 Ferdinand Porsche received the contract to design a super heavy tank, the Type 205 “Maus” (Mouse), of which only two prototypes were ever built, however, and never saw action. During the war, development of the military derivatives of the Volkswagen as well as various tank prototypes – including the involvement of prisoners of war employed as forced labourers – took place predominantly in Stuttgart-Zuffenhausen. With the intensification in bombing raids, the Porsche KG engineering office, classified as important to the war effort, was relocated in autumn 1944 from Stuttgart to Gmünd in Carinthia, Austria.

New beginning with third-party client development and sports car construction

With the war over, the Porsche engineering office in its new home in Austria strove to attract new contracts from the automotive sector. But initially it was water turbines, cable winches, ski lifts, mowing bars and various types of tractor based on the “People’s Tractor” that were developed and for the first time also sold under the Porsche name. The most important customer in the early post-war years was the Italian company Cisitalia, whose car enthusiast owner Piero Dusio awarded numerous design contracts at the end of 1946. In addition to a tractor and water turbine, Dusio ordered a mid-engine sports car with hydraulic torque converter and a Grand Prix racing car. The upshot was the Type 360 “Cisitalia” completed in 1948, which technically was far ahead of its time on many counts. Unlike the front-engine Formula One racing cars of the post war year, which for the most part still featured rigid axles, the Type 360 was designed with a mid-engine layout. The suspension featured double trailing arms on the front axle, the rear axle being configured as a double-joint swing axle with torsion bar suspension. In terms of drive train, the single-seater featured a 385 hp (283 kW) 12-cylinder engine with compressor, achieving a maximum engine speed of 10,600 rpm. The 1.5 litre boxer engine’s four camshafts were driven by bevel shafts. The synchronised five-speed transmission – as with the gear change on a motorbike – could be operated with just two gearshift levels via a dog clutch. Thanks to the experience with the Auto Union P-racing car, there was an awareness of the traction problems with the narrow racing tyres that were customary at the time. Power transmission was therefore by means of all-wheel drive that could be activated by the driver if required. But financial difficulties affecting the client Cisitalia prevented the Type 360 from taking part in Grand Prix races.

In July 1947, independent design work began on the Type 356 “VW sports car”. The design concepts became reality in the first half of 1948 under the in-house design number 356 based on earlier designs such as the Volkswagen or Type 64 “Berlin-Rome car”. Once the chassis had completed its maiden drive in February, the finished prototype with the chassis number 356-001 received one-off approval by the State Government of Carinthia. The Porsche sports car brand had been born. Production of the rear-engined coupé and convertible versions of the Porsche Type 356/2 started in the second half of 1948. Series production of this sports car began after the return to Stuttgart in 1950, approximately 78,000 vehicles being built by 1965. The successor model, the Porsche 911, finally helped the company to make the breakthrough as one of the technically and stylistically leading sports car manufacturers in the world.

From the Weissach Engineering Office to the Weissach Development Centre

Despite the successful entry into vehicle manufacturing, third-party client development commissions remained a firm fixture in the then Porsche KG’s service portfolio. The most important client right into the 1970s was Volkswagen AG, with whom there had been an extensive cooperation agreement. Numerous detailed improvements were devised for the VW “Beetle”, which was produced in Wolfsburg in exchange for payment to Porsche of a licence fee of approximately DM 5 per vehicle. Porsche was also involved in developing the successor models for the successful Beetle. The Stuttgart-based company developed numerous prototypes on behalf of the Volkswagen Group, which were to prove groundbreaking for the Wolfsburg Group’s passenger vehicle programme. The best-known contract developments were the VW Porsche 914 unveiled in the autumn of 1969 and the Porsche 924 built in response to Volkswagen development contract EA 425.

In addition to the numerous orders for the Volkswagen Group, Porsche’s third party client development engineers developed numerous other innovations for domestic and foreign clients in the 1950s and 1960s. Porsche developed the amphibious all-wheel-drive Type 597 Jagdwagen vehicle in response to a Bundeswehr invitation to tender. Although the Jagdwagen proved to be technically superior, the contract was awarded to car and motorcycle manufacturer DKW for labour market reasons. Overseas customers as well, such as the Studebaker Corporation, put their faith in Porsche KG’s experience. Between 1952 and 1954, the Stuttgart-based sports car manufacturer developed a four-door saloon with self-supporting body and modern ponton design for the American carmaker.

In 1971, Porsche’s Development Division with its Construction, Testing and Design Departments relocated to the newly constructed Development Centre in Weissach, 25 kilometres to the north-west of Stuttgart-Zuffenhausen. Ferry Porsche had already had a so-called “skid pad” built there 10 years earlier, which had been used ever since for conducting suspension tests. In addition to a large test track, the 1970s and 1980s saw the building of high-spec installations such as wind tunnel, crash facility, emissions testing centre and a wealth of engine test rigs that are available for third-party contracts and in-house developments alike. The Development Centre spanned virtually all areas of civil and military engine technology. Large orders from the German Army were also handled as were future automotive studies for the Federal Ministry of Research and Technology. The client portfolio was recruited from virtually the whole of the world’s automotive industry, which drew on Porsche’s know-how for its own vehicle programmes, from detailed technical solutions to entire vehicles.

Industrial projects and series development

Breaking new ground is a tradition with Porsche’s third-party client development. For example, in the early 80s, Weissach engineers and aircraft manufacturer Airbus joined forces to design a cockpit layout for wide-bodied aircraft, setting a trend by using displays in place of the conventional analog instruments. The project sought to achieve discernible improvements for the pilots’ working environment through optimised styling.

Another major project was the “TAG Turbo made by Porsche” engine developed for the British McLaren International racing team, with the aim of causing a sensation at the very pinnacle of motor sport. Unveiled in the summer of 1983, the 1.5 litre, six-cylinder turbocharged engine dominated Formula One, with 25 Grand Prix victories and three world championship titles between 1984 and 1986. The secret of the Formula One high-performance engine’s success lay in marrying the turbocharger technology with an electronic engine management system. As a consequence, the racing car’s fuel consumption was particularly economical, which critically influenced the racing strategy

A milestone in the development of vehicles for industry was the beginning of the tie-in with Linde Material Handling, which continues successfully to this very day. Having already designed slewing gears and chain drives for Linde, in the 1980s the sports car manufacturer Porsche was retained to design a new generation of forklift trucks. In addition to the functional design of the machine, the Porsche engineers paid particular attention to developing a new ergonomically designed driver workstation concept. The symbiosis of technology and aesthetics also proved beneficial to sales: Sales of the stylistically distinctive Linde forklift trucks increased by approximately 15 per cent in the mid-1980s. In addition to steering axles and lifting masts for every conceivable forklift truck weight class, an electric forklift truck model line was also jointly developed with Porsche to the point of market launch. The Porsche styling of Linde’s conveyor systems has since become an award-winning trademark. For example, the Linde T20 pallet truck received the coveted “Red Dot Award for Product Design” from the prestigious North Rhine Westphalia design centre.

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Linde forklift truck

But Porsche Engineering also regularly worked for other carmakers. From 1990 onwards, Porsche’s third-party client development team worked for Daimler-Benz AG on the design and test aspects of a W 124 production saloon fitted with the 5 litre, V8 four-valve M 119 engine. The result was impressive performance. With the four-speed automatic transmission fitted as standard, the Mercedes-Benz 500 E reached the 100 km/h mark (62 mph) in only 5.9 seconds with the top speed electronically limited to 250 km/h (156 mph). In the process, the contract far exceeded the usual development activities. Series production together with the assembly of the body shell and final assembly took place at Porsche’s Zuffenhausen works. The Daimler-Benz works in Sindelfingen were responsible for the paint finish and delivery. Production of the Mercedes-Benz 500 E kicked off in the spring of 1990. The sales success of the speedy GT saloon testified to the successful outcome of the collaboration: 10,479 units had been built by April 1995.

In the early 1990s, Porsche’s third-party client development department entered into a joint venture with Audi to develop a high-performance sport estate car, which caused a sensation. The Audi Avant RS2 unveiled in the autumn of 1993 came into being in Weissach based on the 315 hp (232 kW) variant of the all-wheel drive Audi Avant S2. This borrowed numerous Porsche components, such as for example wheel hubs, high-performance brakes and rims. Exterior parts such as fog lights and indicators as well as the exterior mirrors also came from the Porsche 911 of the then current 993 model series. The Audi Avant RS2 was built at Porsche’s Zuffenhausen works between October 1993 and July 1994. The “Porsche estate car in Audi clothing” – as “Auto Bild” magazine put it – enjoyed keen customer interest. The planned production run of 2000 vehicles was exceeded by 895 units.

In 2001, under the development name “Revolution Engine”, Porsche Engineering started work as a development partner on developing a new V2 engine for the American motorbike manufacturer Harley-Davidson’s “V-Rod” model. Against the backdrop of a collaborative relationship stretching back to the 1970s, Porsche engineers designed a water-cooled, 1131 cc power unit based on a racing engine which delighted discerning Harley-Davidson customers with its performance and engine sound in equal measure.

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Harley Davidson V Rod

Into the future with tradition and innovation

Today, as in the past, Porsche Engineering is grappling with the engineering challenges of the future. Be it the conspicuous expertise in the electromobility arena that Porsche Engineering displayed in the Boxster E research project in 2011 or in the development of the Seabob production water sport sled, experience in the lightweight construction and downsizing arenas but also thinking outside the box with the development of a premium outdoor grill in 2008 – Porsche Engineering’s engineers dedicate themselves to each project with the same commitment to ultimate quality, innovative concepts and customised solutions.

Nowadays, all development projects for clients worldwide are controlled by the Porsche Engineering Group GmbH (PEG) founded in 2001 and headquartered in Weissach. Thanks to Porsche’s own distinctive development network, PEG is able to call on the services of its subsidiaries Porsche Engineering Services GmbH in Bietigheim and Porsche Engineering Services s.r.o. in Prague. By networking all its locations and sharing information closely between project teams, PEG offers interface competency and lateral thinking, ensuring that client projects are delivered consistently and productively and without a hitch.

The combined expertise of Porsche Engineering’s engineers and the comprehensive resources at the Weissach Development Centre’s disposal are behind innovative services to the highest quality standards.But the public only gets to see the tip of the iceberg. Thanks to draconian confidentiality, Porsche Engineering protects its clients’ product strategies and brand identities with the greatest care at all times. Only very few projects are known of, and only with the clients’ explicit consent. Because Porsche’s third-party client development will only succeed if a customer returns. This maxim prevails to this day – as it has for more than 80 years.

Credits: Porsche AG and Porsche Cars North America, Inc.

 

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Porsche 911 GT3 RS 4.0: Biggest 911 Engine Ever Offered

Power, efficiency, performance. Porsche has risen in every discipline. Porsche ambition is high, but the result clearly illustrates why they build sports cars – because there is only one direction: forwards.

ATLANTA – April 28, 2011 — The 911 GT3 RS, one of Porsche’s most popular, coveted and successful track-inspired production cars, has been given a final, thrilling injection of thoroughbred motorsport technology resulting in the 2011 Porsche 911 GT3 RS 4.0. Limited to 600 vehicles worldwide, the 911 GT3 RS 4.0 brings together in a sports car the attributes that have made the Porsche 911 GT3 a consistent winner on the race track.

The motorsport-derived 4.0-liter engine, already the highest displacement 911 engine ever, also features the highest per-liter output — 125 horsepower (hp) per liter — from a naturally aspirated Porsche flat-six engine.

The engine uses forged pistons, the connecting rods are fashioned from titanium, and the crankshaft has been lifted unchanged from the 911 GT3 RSR race car. It achieves its maximum power of 500 hp at 8,250 rpm. Maximum torque of 339 ft/lbs is reached at 5,750 rpm.

The 911 GT3 RS 4.0 offers truly impressive performance, lapping the famed Nürburgring-Nordschleife in 7 minutes and 27 seconds.

Available exclusively with a six-speed manual transmission, the 911 GT3 RS 4.0 sprints from 0 to 60 mph in only 3.8 seconds, and with its gearing designed for the race circuit it reaches the 124 mph mark on the race track in under 12 seconds. The 911 GT3 RS 4.0′s outstanding driving dynamics come from numerous, meticulously coordinated details. In addition to using suspension components typically encountered in motor racing, weight reduction is also of supreme importance.

Equipped as standard with lightweight components such as light but strong carbon fiber sport bucket seats, …………………..

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…………….carbon fiber front fenders and luggage compartment lid, and weight-optimized carpets, the two-seater’s ready-for-action weight is just 2,998 lbs with a full fuel tank.

The 911 GT3 RS 4.0′s power-to-weight ratio is 5.99 lbs/hp. This limited edition 911 is painted Carrara White as standard and emphasizes its proximity to motor racing by its dynamic appearance.

Signature characteristics are the wide track, the low vehicle position, the large rear wing with side plates, central twin tailpipe, and the aerodynamically optimized body. Air deflection vanes mounted on either side of the front bumper – called ‘flics’ or dive planes – make their first appearance on a production Porsche. They create increased downforce on the front axle, and together with the steeply inclined rear wing, provide aerodynamics on par with its performance capabilities.

As a result, at the 193 mph top track speed, aerodynamic forces exert an additional 426 lbs of downforce, thus pushing the 911 GT3 RS 4.0 onto the road. With a manufacturer’s suggested retail price starting at $185,000 (excluding destination), the new Porsche 911 GT3 RS 4.0 goes on sale in the United States in late 2011.

Chris Harris has an exclusive interview with Andreas Preuninger about the new Porsche 911 GT3 RS 4.0. Read the full story at www.evo.co.uk

The UK list price is yet to be confirmed, but Porsche has advised that £128,000 is likely to be the figure. There are only 600 cars being built, and fewer than 50 will come to the UK.

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About Porsche Cars North America Porsche Cars North America, Inc.

(PCNA), based in Atlanta, Ga. is the exclusive U.S. importer of Porsche sports cars, the Cayenne SUV and Panamera Gran Turismo. Established in 1984, it is a wholly-owned subsidiary of Porsche AG, which is headquartered in Stuttgart, Germany, and employs approximately 220 people who provide parts, service, marketing and training for 196 dealers. They, in turn, work to provide Porsche customers a best-in-class experience that is in keeping with the brand’s 63-year history and leadership in the advancement of vehicle performance, safety and efficiency. At the core of this success is Porsche’s proud racing heritage that boasts some 30,000 motorsport wins to date. Note:

Photos by Porsche Press Database

For more information please visit http://www.porsche.com/rs

 

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