Find or Sell Used Cars, Trucks, and SUVs in USA

1983 El Camino on 2040-cars

US $4,500.00
Year:1983 Mileage:50400
Location:

Garner, North Carolina, United States

Garner, North Carolina, United States
Advertising:

This is a restoration project.Sold as is.Frame has been removed and rustproofed.all new body bushings installed .new upper control arms and bushings.new ball joints.new front rotors and calipers.brake lines checked and replaced where needed.305 v8rebuilt short block.motor runs good needs timing carb adjustment.trans good. rear good.All new coil springs.all new shocks.new headliner.new carpet.Needs paint .only minor rust spots.new window swipes installed.
needs rubber door seals.needs front seat redone.

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Auto blog

More 2017 Chevy Bolt powertrain details revealed

Mon, Jan 11 2016

We've seen the production version of the Chevy Bolt electric vehicle. We've driven a prototype version. And now it's time to get some details about the powertrain. After the production version's reveal at CES last week, GM trotted out the Bolt EV for its Detroit debut this morning. The company brought with it a bunch of technical specifications. We'll start with the most important part of an EV: the battery. GM has put a 60-kWh lithium-ion battery that weighs just just 960 pounds into the floor of the Bolt. As previously announced, the Bolt's 288 cells will be able to go over 200 miles on a full charge. That full charge takes nine hours on a Level 2 EVSE thanks to the onboard 7.2-kW charger. Of course, a full charge won't be that important most days, which is why GM says that you can get 50 miles of range in "less than two hours" on Level 2. There's a SAE Combo DC fast charging option as well. The battery will have an eight-year/100,000-mile warranty. The Bolt will be able to sprint up to 60 miles per hour in "less than seven seconds" thanks to a 150-kW/200 horsepower motor in the Bolt. The motor is a new GM design that can produce up to 266 pound-feet of torque. The Bolt uses a shift-by-wire system and an, "offset gear and shaft configuration tailored to meet efficiency and performance targets." The Bolt EV's powertrain has a 7.05:1 final drive ratio. You can read all of the details direct from GM below. Related Video: Drive Unit and Battery at the Heart of Chevrolet Bolt EV Engineers focus on careful balance of range and performance DETROIT, Mich. – The 2017 Chevrolet Bolt EV does more than set a new benchmark for affordable, long-range EV driving. It also raises the bar when it comes to driving performance. Engineers developed the Bolt EV's propulsion system to offer more than an estimated 200 miles (based on GM estimates) and a delightful driving experience that's more akin to a compact sports sedan than a small utilitarian crossover. "Being the leader in range and affordability means nothing if the car isn't going to excite you each time you get behind the wheel," said Josh Tavel, Chevrolet Bolt EV chief engineer. "That's why the team was tasked with delivering a propulsion system that would also make the Bolt EV an electric vehicle that owners would love to drive." Single Motor Drive Unit Like most EVs on the road, the Bolt EV's drive system uses a single high capacity electric motor to propel the car.

2016 Chevy Volt auctioned off to help the robots

Tue, Nov 10 2015

One of the cool things about the 2016 Chevrolet Volt extended-range plug-in being auctioned off to raise money for kids' science and robotics program is that even the sedan's color sounds very scientific. Indeed, it's fitting that a "Kinetic Blue" Volt will be used to advance the scientific education of the country's students, according to Hybrid Cars. That is, if it fetches enough cash. Chevrolet parent General Motors was kind enough to donate a 2016 Volt to the so-called FIRST K-12 robotics program (FIRST stands for For Inspiration and Recognition of Science and Technology). The program was founded in 1989. Last year, General Motors engineers worked with about 10,000 FIRST students in the US, but it looks like GM is now going the cold-hard-cash route to make its mark on future scientists. Bidding for the vehicle will take place until the morning of November 19, and, hopefully, it will generate enough interest to drive the bidding price up beyond its MSRP. As of Tuesday morning, nine bids had been taken, with the top one at $27,750. That's all fine and good except the car is pretty loaded with bells and whistles, and it's 53-mile electric-only range is a considerable jump from the first-generation Volt, so the car's "estimated value" is $40,245 (not factoring in the $7,500 federal tax incentive). That's a pretty good jump over the 2016 Volt's base price of $33,995, which marked a $175 price cut from the 2015 model. So pony up, folks. It's for the kids. Related Video:

Three automotive tech trends to watch in 2018 and beyond

Thu, Dec 28 2017

Every year, technology plays a bigger and bigger role in the auto industry. To put things in perspective, 10 years ago iPod integration and Bluetooth were cutting-edge in-car innovations, and smartphones and apps weren't yet a thing since the first iPhone was only about six months old. And I can't recall anyone talking about autonomous cars. Compare that to today, with mainstream coverage of the auto industry dominated by autonomous technology, along with electrification and almost every move made by Tesla. These three topics were the most significant trends of car tech in 2017 and I believe they will continue to shape the auto industry in 2018 and beyond. Let's examine them. Full Autonomy Gets Closer to Reality While there were many developments this year that indicate we're inching closer to fully autonomous vehicles, I was behind the wheel for hours to witness one of them. In October I had the chance to test Cadillac Super Cruise on a 700-mile, 11-hour drive from Dallas to Santa Fe – and had my hands on the wheel for maybe 45 minutes max throughout the entire trip. Super Cruise is far from making the Cadillac CT6 or any GM vehicle fully autonomous, and has limitations such as functioning only on pre-mapped main highways. While it simply adds a layer of lane centering to adaptive cruise control, the technology will go a long way in making mainstream drivers more comfortable with letting machines take over. On a separate front, GM is pushing ahead with fully autonomous vehicles and announced last month that it plans to launch of fleets of self-driving robo-taxis in several urban areas in 2019. While most automakers are also in the race to make autonomous cars a reality, GM's turbocharging of its efforts appeared to be in response to Waymo, which announced just weeks earlier that its Early Rider Program in the Phoenix area would go completely driverless. The Early Rider Program launched last April, offering the public a chance to ride in Waymo's autonomous Chrysler Pacifica minivans. In this new phase of testing, Waymo is using its own employees as guinea pigs instead of the public while the vehicles operate without a human behind the wheel, and takes another giant step forward for fully autonomous driving.