1970 Big Block 4 Speed Chevelle on 2040-cars
Inwood, New York, United States
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1970 CHEVELLE 468 BIG BLOCK LS6 INTERNALS WIESCO PISTONS 990 HEADS 4 SPEED 12 BOLT SOLID CAR On Apr-20-14 at 03:46:18 PDT, seller added the following information: PLEASE REFER TO OTHER LISTING. SOME HOW POSTED MORE THAN ONCE. PLEASE READ THE LISTING THAT STATES "BID ON THIS LISTING". I WILL CONTACT EBAY TO REMOVE ADDITIONAL POSTINGS. IM SORRY FOR THE MISTAKE, On Apr-20-14 at 03:50:01 PDT, seller added the following information: PLEASE DO NOT BID HERE. |
Chevrolet Chevelle for Sale
1969 chevelle ss 396 4spd very nice fresh restoration beautiful lemans blue
1970 chevrolet chevelle ss 6.5l(US $42,000.00)
**test drive video** 4-speed, factory air conditioning, power disc brakes(US $59,990.00)
1972 chevrollet chevelle ss #'s matching flame orange with black stripes
1967 chevelle ss(US $22,500.00)
1972 chevy chevelle malibu 1968 1967 1969 1970 1971
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Auto blog
We really want to use an eCrate to restomod an old GM car. Here's what we'd build
Fri, Oct 30 2020You hopefully saw the news today of GM's introduction of its Connect and Cruise eCrate motor and battery package, which effectively makes the Bolt's electric motor, battery pack and myriad other elements available to, ah, bolt into a different vehicle. It's the same concept as installing a gasoline-powered crate motor into a classic car, but with electricity and stuff. This, of course, got us thinking about what we'd stuff the eCrate into. Before we got too ahead of ourselves, however, we discovered that the eCrate battery pack is literally the Bolt EV pack in not only capacity but size and shape. In other words, you need to have enough space in the vehicle to place and/or stuff roughly 60% of a Chevy Bolt's length. It's not a big car, but that's still an awful lot of real estate. There's a reason GM chose to simply plop the pack into the bed and cargo area of old full-size SUVs. Well that, and having a rear suspension beefy enough to handle about 1,000 pounds of batteries. So after that buzz kill, we still wanted to peruse the GM back catalog for classics we'd love to see transformed into an electric restomod that might be able to swallow all that battery ... maybe ... possibly ... whatever, saws and blow torches exist for a reason. 1971 Buick Riviera Consumer Editor Jeremy Korzeniewski: If you’re going to build an electric conversion, why not do it with style? ThatÂ’s why IÂ’m choosing a 1971-1973 Buick Riviera. You know, the one with the big glass boat-tail rear end that ends in a pointy V. Being a rather large vehicle with a big sloping fastback shape, IÂ’m hoping thereÂ’s enough room in the trunk and back seat to pack in the requisite battery pack. That would likely require cutting away some of the metal bulkhead that supports the rear seatback, but not so much that a wee bit of structural bracing couldnÂ’t shore things up. The big 455-cubic-inch Buick V8 up front will obviously have to go. Remember, this was the 1970s, so despite all that displacement, the Riviera only had around 250 horsepower (depending on the year and the trim level). So the electric motorÂ’s 200 horsepower and 266 pound-feet of torque ought to work as an acceptable replacement.  1982 Chevrolet S10 Associate Editor Byron Hurd: OK, so the name "E-10" is already taken by a completely different truck, but let's not let labels get in the way of a fun idea.
See the new COPO Camaro's awesomeness from many angles
Sun, Feb 7 2016Considering that the COPO Camaro exists solely to drag race, the action you'll see in this video comes as little surprise. Still, Chevrolet Performance wants to prove that the 2016 model, which uses on the sixth-gen body, is just as adept launching down the strip as previous COPOs. This example may still be testing, but its 427-cubic-inch V8 performs like a champ. The engine's raw muscle, at least when coupled with suitably wide and sticky tires, is enough to lift the front wheels when the driver puts the hammer down off the line. This video from Chevy Performance shows off all the drag-strip action from several unexpected angles. You can watch the rear axle at work and even see the engine under the hood during the run. Our personal favorite is the shot of the launch from underneath the car – it's a perspective you never usually get to see. And, naturally, there are lots of great angles showcasing the car's massive burnout potential. The 2016 COPO Camaro debuted at SEMA in 2015. Buyers have a choice of three V8s, and all of them come with a three-speed automatic gearbox, solid rear axle, and adjustable suspension. Relish this opportunity to see the 2016 COPO Camaro at work, but remember, it's a rare beast. As in years past, Chevy plans to build just 69 of them. Over 5,500 people applied to get one in 2016, and the first example brought $300,000 for charity. Related Video:
The Army goes off-roading with a hydrogen Chevy Colorado
Sun, Nov 22 2015The Chevrolet Colorado is joining the service. General Motors is working with the US Army Tank Automotive Research, Development & Engineering Center (TARDEC) to build a Colorado powered by a commercial hydrogen fuel cell stack, and the Army will use it in "extremes of daily military use for 12 months." TARDEC is the department that tests "advanced military automotive technology" and integrates them into ground systems. The aim is to see how well the benefits of a fuel cell vehicle can be adapted to the battlefield; hydrogen-powered vehicles are quiet, torquey, produce water, and can be used to provide electricity in the field. GM says the design sketch above "foreshadows" the Colorado that will go to boot camp and beyond, making it clear that this won't be the average midsize pickup. The press release below has more. Related Video: GM and U.S. Army to Demonstrate Extreme Off-Road Hydrogen Fuel Cell Chevrolet Colorado Agreement focused on proving unique utility and viability of fuel cell propulsion WARREN, Mich. 2015-11-19 – General Motors and the U.S. Army Tank Automotive Research, Development & Engineering Center (TARDEC) are modifying a Chevrolet Colorado midsize pickup truck to run on a commercial hydrogen fuel cell propulsion system and will expose the truck to the extremes of daily military use for 12 months. "Hydrogen fuel cell technology is important to GM's advanced propulsion portfolio, and this enables us to put our technology to the test in a vehicle that will face punishing military duty cycles," said Charlie Freese, executive director of GM's Global Fuel Cell Engineering activities. Fuel cell propulsion has very high low-end torque capability useful in off-road environments. It also offers exportable electric power and quiet operation, attractive characteristics to both commercial and military use. "The potential capabilities hydrogen fuel cell vehicles can bring to the Warfighter are extraordinary, and our engineers and scientists are excited about the opportunity to exercise the limits of this demonstrator," said TARDEC Director Paul Rogers. "FCVs are very quiet vehicles, which scouts, special operators and other specialties place a premium," he said. "What's more, fuel cells generate water as a by-product, something extremely valuable in austere environments." GM and TARDEC have fuel cell development and research facilities located 20 minutes apart in Pontiac and Warren, Mich.



