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2012 Chevrolet Avalanche Ltz Crew Cab Pickup 4-door 5.3l on 2040-cars

US $39,000.00
Year:2012 Mileage:29548
Location:

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2012 CHEVROLET AVALANCHE LTZ

CALL OR TEXT JOHN, 501-658-8001

5.3L VORTEC V8 w/ACTIVE FUEL MANAGEMENT

22" WHEELS

TOUCH SCREEN NAVIGATION

POWER MOONROOF

REAR DVD ENTERTAINMENT

LEATHER

WEATHER-TECH FLOOR MATS

HEATED & COOLED BUCKET SEATS

HEATED STEERING WHEEL

BACK-UP CAMERA & ULTRASONIC REAR PARK ASSIST

BOSE SOUND

XM RADIO

USB PORT

BLUETOOTH FOR CELLPHONE

DRIVER MEMORY

KEYLESS ENTRY & REMOTE START

POWER FOLDING/POWER ADJUSTING HEATED SIDE MIRRORS

AUTO-DIMMING REAR VIEW MIRROR

DRIVER INFORMATION CENTER

POWER ADJUSTABLE PEDALS

REAR WINDOW DEFOGGER

HD TRAILERING PACKAGE

FULLY AUTOMATIC LOCKING REAR DIFFERENTIAL

3.42 REAR AXLE

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We really want to use an eCrate to restomod an old GM car. Here's what we'd build

Fri, Oct 30 2020

You 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.

Chevy shows much-improved 2014 Corvette interior in new video

Mon, 11 Feb 2013

If you want a closer look at what went into designing and building the interior for the 2014 Chevrolet Corvette, we've got just the thing. General Motors has released a new video detailing the cabin's evolution from conception to execution, complete with commentary from Ryan Vaughn, performance car interior design manager with Chevrolet. The quick clip details how manufacturing, engineering and design within General Motors worked together from the first sketches to ensure no compromises had to be made later down the line. How novel.
With plenty of hides traced with contrast stitching and available real carbon fiber trim, the cabin looks to be a few hundred miles ahead of the C6. Given how readily critics derided the previous generation for its cabin, the C7 should make writers work a little harder to find something to complain about. Check out the video below for yourself.

Chevy confirms 2016 Camaro will have wheels, brakes

Thu, Apr 9 2015

Good news, everyone! Chevrolet has issued yet another round of teaser images and information about the sixth-generation Camaro, set to debut in Detroit on May 16. This time around, Chevy's teaser images confirm that the new car will not only have wheels and tires (Goodyear Eagle F1s, no less), but brakes as well. On top of that, we now know that the new Camaro will be 28-percent stiffer than the outgoing model. "The more rigid body structure allowed the engineers to more precisely calibrate the steering and suspension systems because they didn't have to compensate for chassis flex. The lighter structure also enabled the size and mass of elements such as the wheels, tires and brakes to be scaled accordingly," GM said in a press release, which you can read below. We've already learned that the new coupe will be 200 pounds lighter than its predecessor, has a bunch of unique parts, and according to GM's Mark Reuss, will outperform the Ford Mustang in every way. Now, it's only a matter of time before we see the sixth-gen Camaro, but surely not before Chevy issues even more teasers and information. Related Video: 2016 Camaro is Stronger, Lighter and More Responsive Computer aided engineering contributes to 28 percent greater structural stiffness DETROIT – The engineering team spent 9 million hours of computational time honing the driving experience of the all-new 2016 Chevrolet Camaro before the first prototype turned a wheel. The structural modeling led to the Gen 6 Camaro being 28 percent stiffer than the current model. "The modeling abilities of computer aided engineering are advancing at incredible rates," said Jim Karlavage, Camaro program engineering manager. "Today, we can accurately model opportunities to add torsional strength without adding unnecessary mass. The result is a lighter, stiffer structure that benefits every aspect of the driving experience." The more rigid body structure allowed the engineers to more precisely calibrate the steering and suspension systems because they didn't have to compensate for chassis flex. The lighter structure also enabled the size and mass of elements such as the wheels, tires and brakes to be scaled accordingly. "The structural weight savings are compounded by opportunities to reduce un-sprung weight," said Karlavage.