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Auto blog
Porsche to replace chassis components in 918 Spyders
Tue, Dec 23 2014The entire production run of the Porsche 918 Spyder is completely sold out, but 205 of them need to make a trip to the dealer for a repair estimated to take about two days. According to Porsche, it found quality problems with unspecified "chassis components" on the hybrid supercar and has instituted a plan to fix them as a precautionary measure. There were no reported breakages of these parts or complaints from customers. The German automaker already contacted all of the affected owners directly to have the 918s repaired in 2015. When reached for comment, Porsche Director of Corporate Communications Achim Schneider told Autoblog via email that "due to the supplier relationship we did not announce further details regarding the components so far." He also said that 43 vehicles are affected in North America, which includes the US and Canada. The 918 Spyder was affected by a small recall in the US earlier this year when Porsche found that the rear-axle control arms could potentially break. The campaign covered only five cars, though. Porsche replaces chassis components in 205 vehicles worldwide Atlanta. As a precautionary measure, Porsche will replace chassis components in 205 vehicles of the 918 Spyder model worldwide. The reason for this is that for vehicles that were manufactured in a certain time period defective parts were used from a delivery batch, whose functionality cannot be permanently guaranteed. No complaints have been made known (such as a break of a component) from customers up till now. The problem was identified during in-house quality inspections and remedied immediately. The owners of the vehicles, which could be exactly traced, were contacted directly by their competent Porsche representatives. The workshop visit, which will take place by appointment at the onset of 2015, takes about two days to complete at no charge. Featured Gallery 2015 Porsche 918 Spyder: First Drive View 51 Photos News Source: PorscheImage Credit: Copyright 2014 Michael Harley / AOL, Porsche Green Recalls Porsche Hybrid Supercars porsche 918 spyder porsche 918
eGarage video features Helmuth Bott's personal Porsche 959 prototype
Fri, 12 Apr 2013"We thought we were going to build a super-911," said Peter Schutz, former CEO of Porsche AG of the development of the Porsche 959. That was before it started getting expensive. At that point, Helmuth Bott, Porsche R&D director got frightened. Costs ballooned because of the all-wheel drive, sequential turbocharging and other technology Porsche had never even thought about when it set out to build a 911 to compete in Group B. Schutz continued, "The amount of resources we were committing got totally out of hand." Instead of pulling the plug, Bott doubled down and drew on the strength of his brilliant team to build a car whose impact is still echoing aross the industry.
"It's probably one of our most prized possessions" says Don Leatherwood, Director of the Brumos collection where Dr. Bott's personal prototype resides, and where Frazer Spowart went to see the car and create a video for eGarage. Check out the sights and sounds of the 959 before it was the 959, and get personal takes on the car from Hurley Haywood, Peter Schutz and Don Leatherwood. Keep reading to see the video.
Is the skill of rev matching being lost to computers?
Fri, Oct 9 2015If the ability to drive a vehicle equipped with a manual gearbox is becoming a lost art, then the skill of being able to match revs on downshifts is the stuff they would teach at the automotive equivalent of the Shaolin Temple. The usefulness of rev matching in street driving is limited most of the time – aside from sounding cool and impressing your friends. But out on a race track or the occasional fast, windy road, its benefits are abundantly clear. While in motion, the engine speed and wheel speed of a vehicle with a manual transmission are kept in sync when the clutch is engaged (i.e. when the clutch pedal is not being pressed down). However, when changing gear, that mechanical link is severed briefly, and the synchronization between the motor and wheels is broken. When upshifting during acceleration, this isn't much of an issue, as there's typically not a huge disparity between engine speed and wheel speed as a car accelerates. Rev-matching downshifts is the stuff they would teach at the automotive equivalent of the Shaolin Temple. But when slowing down and downshifting – as you might do when approaching a corner at a high rate of speed – that gap of time caused by the disengagement of the clutch from the engine causes the revs to drop. Without bringing up the revs somehow to help the engine speed match the wheel speed in the gear you're about to use, you'll typically get a sudden jolt when re-engaging the clutch as physics brings everything back into sync. That jolt can be a big problem when you're moving along swiftly, causing instability or even a loss of traction, particularly in rear-wheel-drive cars. So the point of rev matching is to blip the throttle simultaneously as you downshift gears in order to bring the engine speed to a closer match with the wheel speed before you re-engage the clutch in that lower gear, in turn providing a much smoother downshift. When braking is thrown in, you get heel-toe downshifting, which involves some dexterity to use all three pedals at the same time with just two feet – clutch in, slow the car while revving, clutch out. However, even if you're aware of heel-toe technique and the basic elements of how to perform a rev match, perfecting it to the point of making it useful can be difficult.