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Audi developing EV batteries with LG Chem, Samsung SDI
Fri, Aug 14 2015Audi is continuing to trickle out more details about a future electric SUV with a range of over 311 miles, and the Four-Ringed Brand now has a deal with LG Chem and Samsung SDI to use their cells in its battery design for the upcoming EV. The two companies are also agreeing to make investments in Europe to produce and supply parts there for the vehicle. "We will optimally integrate the innovative cell modules developed with LG Chem and Samsung SDI into our vehicle architecture, thus achieving an attractive overall package of sportiness and range," Dr. Ulrich Hackenberg, Audi Board of Management member for development, said in the deal's announcement. Hackenberg first publicized the EV during the brand's annual press conference this year. At the time, he confirmed that the model will use the same MLB 2 platform as the Q7 and set a launch date of early 2018. The vehicle reportedly carries the internal codename C-BEV, and a concept version might show up at September's Frankfurt Motor Show. Current rumors suggest that the EV will use a 90-kWh battery pack to achieve such a long range. Three electric motors could provide a total output of 500 horsepower and 516 pound-feet of torque. Related Video: POWERFUL BATTERY IN AUDI ELECTRIC CAR WITH CELL MODULES FROM LG AND SAMSUNG South Korean high-tech companies LG Chem and Samsung SDI to invest in European battery-cell production for Audi Battery-electric SUV with a range of more than 500 kilometers First battery-electric Audi SUV will combine sportiness and range with an emission-free driving system August 13, 2015 | INGOLSTADT, Germany -- Audi will develop the battery for a purely electrically powered sport utility vehicle on the basis of powerful cell modules from the South Korean suppliers LG Chem and Samsung SDI. The two Audi partners plan to invest in the cell technology in Europe and will supply the Ingolstadt-based car producer from their European plants. The new technology will give drivers of the Audi sport utility vehicle a range of more than 500 kilometers. "Together with our South Korean development partners, we are bringing production of the latest battery-cell technology to the EU and strengthening European industry with this key technology," stated Dr. Bernd Martens, Member of the Board of Management of AUDI AG for Procurement. The cell modules are to offer particularly high performance.
2015 Audi A3 E-Tron [w/video]
Tue, 15 Jul 2014Over the years, we've had a chance to test a lot of Audi E-Tron vehicles, from very early all-electric prototypes (back then we only got to sit in the passenger seat) to the A6 L E-Tron PHEV and the A1 E-Tron plug-in hybrid. All of them were concepts and promises, merely whispers of what was possible, even as the Nissan Leaf, Chevrolet Volt and two Tesla models were making waves in the marketplace.
As we learned last year in our Deep Dive of the E-Tron project, all of the concepts, prototypes and rumors have finally come to fruition in this A3 Sportback E-Tron. Previously, we were given a chance to drive a prototype, but it was only very briefly. Last week, we finally got to run a production-representative example through the hilly roads between Vienna, Austria and Munich, Germany. After spending a solid day with Audi's first marketable E-Tron vehicle, we can say that it's a most amazing bit of engineering, in particular for the way that Audi has done so much to hide the fact that this is an electrified vehicle. Not entirely, of course, but the idea was to make the A3 Sportback E-Tron a no-compromise PHEV. And that means it drives and feels, in many ways, like the standard A3 Sportback despite over 700 extra pounds. Oh, and there's a charge port hidden behind the four rings in the grille.
Audi kills off its 420-hp four-cylinder engine project
Fri, Sep 23 2016Audi's supercar-slapping, fire-breathing four-cylinder concept engine will remain just that, with Autoblog confirming that it has been internally killed off. Speaking at the launch of the TT RS, the engineering boss of Audi's Quattro GmbH division, Stephan Reil, said the Volkswagen Group had stopped all development of the 420-horsepower, 2.0-liter four it showed in the 2014 TT Quattro Sport Concept car (above). Despite previous assurances that Quattro had roles for both the EA888-based engine and Audi's wildly charismatic 2.5-liter, five-cylinder motor, post-Dieselgate reality has killed the smaller engine. "The 400-horsepower EA888 engine is dead," Reil said. The EA888 engine was conceived and developed by the same man behind AMG's powerhouse 2.0-liter four. Friedrich Eichler left AMG to become the Volkswagen Group's gasoline engine development go-to guy, and he was confident the 420-hp engine could be turned into a production car quickly, as was then-Audi development boss, Ulrich Hackenberg. It was even suggested that because the EA888 engine family bolted straight into the Volkswagen Group's ubiquitous MQB small-car architecture, the little powerhouse could be cheaply and quickly dropped into any of the company's cars that needed an image boost. Since then, Quattro has elevated the five-cylinder motor, switching it to an all-alloy block with a magnesium oil pan to cut down its weight while boosting its power and torque levels. Where the four-cylinder engine was shown with 420 hp and 332 lb-ft of torque, the production version of the TT RS's new five-cylinder engine totes 400 hp and 354 pound-feet of torque. The smaller engine's proponents claimed a 0-62 mph acceleration figure of just 3.7 seconds for the concept TT that carried it, and it might not be a coincidence that the all-new TT RS claims exactly the same figure. The 2.0-liter motor had a torque peak that arrived at 2,400 rpm and began to taper off at 6,300 rpm, while its power apexed at 6,700 rpm, thanks in part to a turbocharger that could feed it up to 1.8 bar of air. Flip to the TT RS' data and you're looking at more torque at lower revs and a touch less power, but at higher revs. That's not a lot of wriggle room for the concept engine to operate, especially when the perceived value of the five-cylinder engine is higher than the four, and the four's development and production costs would be higher than the five's.
