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Auto blog
2016 Audi R8 E-Tron packs 456 hp and goes on sale this year
Wed, Mar 4 2015For the longest time, the Audi R8 E-Tron seemed like such a fantasy, we never really though it'd come to fruition. But it's here, in second-generation R8 form. It's really, actually, finally here. It looks like a electrified R8, too, with oversized, EV-spec wheels, and a revised front fascia that lends itself well to the more chiseled design of Audi's mid-engine coupe. Thanks to that nice shape and those air-slicing wheels, Audi has achieved a drag coefficient of 0.28 for the R8 E-Tron. The 92-kWh, T-shaped battery is actually integrated into the center tunnel behind the passenger compartment, so it helps with the car's weight distribution and center of gravity. The two electric motors are mounted at the rear. As for the specs, things look awesome: 456 horsepower, 679 pound-feet of torque, 0-62 in 3.9 seconds, top speed of either 130 or 155 miles per hour, a range of 280 miles and a charging time of less than two hours. And it's going on sale. Like, for real. Audi's press blast clearly states, "Upon customer request, the R8 E-Tron will be available for order in 2015 as an electrically powered sports car in supreme hand-built quality." Consider us stoked. Electrified: Audi R8 e-tron The second generation of the Audi R8 forms the basis for two more models. Audi has made major engineering developments in its high-performance electric sports car, the R8 e-tron. The latest evolution of the vehicle takes up the multimaterial Audi Space Frame from the new series-production model. The supporting structure was enhanced by a CFRP rear-section module comprising the luggage compartment. The walls of the CFRP luggage compartment well are corrugated. This way, in the event of a rear-end collision, more energy can be absorbed despite the reduced material weight. Thanks to targeted modifications to the outer shell and on the wheels, the Audi R8 e-tron achieves an aerodynamic drag coefficient (cd) value of 0.28. In terms of performance and range, the car enters entirely new dimensions. The large T-shaped battery is structurally integrated into the center tunnel and behind the occupant cell – optimally positioned in the car. It supports the dynamics of the R8 e-tron with its low center of gravity. Audi produces the high-voltage battery itself, for the first time based on a newly developed lithium-ion technology which was specially conceived for a purely electric vehicle drive.
Porsche hybrids come up short at Le Mans
Tue, Jun 17 2014Two cars, one finish, zero victories. That's a brief synopsis of Porsche's hybrid-vehicle performance in the 24 Hours of Le Mans race in France. There's always next year. Porsche entered two 919 Hybrid vehicles in the race. The No. 14 car essentially limped to the finish line after encountering drivetrain problems. The other Porsche hybrid, No. 20, was driven by Germany's Timo Bernhard, New Zealand's Brendon Hartley and Australia's Mark Webber. That car ran for more than 22 hours before its own powertrain issues did that racing team in for good. Both vehicles ran towards the front of the pack at times during the race, and the No. 20 car actually led the race after about 20 hours. Still, both teams said they were disappointed in the results. Porsche sister company Audi came up big for the 13th time in the race's long and storied history. One Audi R18 E-Tron Quattro won the race, while another finished second. The Toyota that had pole-position and was winning much of the race shut down after 15 hours of racing because of electrical issues and Nissan had trouble with is ZEOD RC. Check out Porsche's press release below, and read here for a more general race recap. STRONG PERFORMANCE BY PORSCHE 919 HYBRIDS BUT NO DREAM ENDING IN PROTOTYPE RETURN TO LE MANS Le Mans. After a strong performance by both Porsche 919 Hybrids, the Porsche Team was left empty-handed after a dramatic final stage of the race. Following more than 22 hours, car No. 20 driven by Timo Bernhard (Germany), Brendon Hartley (New Zealand) and Mark Webber (Australia) suffered a powertrain problem at the world's most famous endurance race, the 24 Hours of Le Mans. Earlier in the race the LMP1 class car was leading overall for a significant period of time. The second innovative and highly complex prototype – in the hands of Romain Dumas (France), Neel Jani (Switzerland) and Marc Lieb (Germany) – likewise proved to be very competitive, but was hampered by a drivetrain problem. However, their No. 14 car crossed the finish line under its own power. After a thrilling start to the race with changing weather conditions, numerous accidents and a relatively calm night, Bernhard took the overall lead in the No. 20. The longtime Porsche factory driver returned to the top spot after 20 of the 24 hours. At 12:36 (CET) on Sunday, he handed the leading car over to Webber. Less than 20 minutes later the Australian was forced to slow down and drove solely on electric power back to pit lane.
Production 4.0: Audi plans for the smart factory
Tue, Jul 21 2015Automotive production is becoming more integrated and at the same time has to be more intelligent and more efficient. Flexible production of customized vehicles is one of the big challenges for the future, especially for a premium carmaker like Audi. How will the "Vorsprung durch Technik" brand meet its aim of offering premium quality with added custom flexibility? The company sees the "smart factory" as the key. Whether it's body-color moldings or light-alloy wheels in a special size, almost every car is ordered with some kind of customization, and the demands are increasing. This requires of course already a lot of flexibility. While the variety of models and quality demands are increasing, automotive manufacturers such as Audi are eager to make production sustainable. In an Audi interview, innovation management members Alois Brandt and Henning Loser talk about "production 4.0" and the upcoming "smart factory." How will Audi manage the production site with its very high standards of quality, efficiency, and environmental acceptability? Will the so-called "smart factory," which should be the intelligent factory of the future, only employ robots? Alois Brandt: "With a deep look into the production, I am convinced that our employees and not machines are the relevant working forces behind the Audi brand. Machines can be bought anywhere." Increasing digitalization is paving the way for the smart factory – the intelligent, digitally connected production facility. New high-tech solutions in manufacturing should further increase the high level of quality, while at the same time the assembly work should be easier and result in better ergonomics. Can you give us a clearer imagination of the "smart factory"? Alois Brandt: "There are a lot of ideas. But the big question at the moment is: Which one is really needed and leads into the right direction?" Can you tell us a little bit more about "production 4.0"? Alois Brandt: "The assembly line as we know it in the present will no longer play the same role. If it makes sense, it will be terminated and replaced by – let's call it – a virtual assembly line. The production will be more modular than before and the car will be directed to a production point – a so-called 'island of competence' – where it is needed." Henning Loser: "If the vehicle is to be assembled to the customer's wishes, it is obvious that efficient programming of robots and coordinating with the human workers is needed.