2011 Ford Mustang Gt500 on 2040-cars
Rocky Mount, North Carolina, United States
Vehicle Title:Clear
Engine:5.4L 5409CC 330Cu. In. V8 GAS DOHC Supercharged
For Sale By:Dealer
Body Type:Coupe
Fuel Type:GAS
Make: Ford
Warranty: Unspecified
Model: Mustang
Trim: Shelby GT500 Coupe 2-Door
Options: Leather Seats
Power Options: Power Windows
Drive Type: RWD
Mileage: 8,137
Number of Doors: 2
Sub Model: GT500
Exterior Color: White
Number of Cylinders: 8
Interior Color: Black
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Auto Services in North Carolina
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Auto blog
Just in time for the holidays, Snowkhana 3 is here
Tue, Dec 9 2014The gift list for the 12 Days of Christmas is frightfully heavy on birds, so surely no one will mind if we sub out the three French hens for Snowkhana 3. Ford of Europe is back with another stop-motion video that – like versions one and two – throws a 1:64-scale Ford Fiesta in Ken Block livery around a fabulous world of action figures and make believe. This year's video "drives rings around some of the biggest YouTube hits," so those of you who've lost years of your lives to the greatest distraction since the human navel can put your knowledge to use. For anyone else just catching up, we'll help you get rolling: the opening Snowkhana scene channels Stalking Cat. You'll find the rest of your holiday homework in the video.
Ford demonstrates Mustang's new Line Lock burnout feature
Tue, 22 Apr 2014Been saving your pennies for a 2015 Ford Mustang? Put in a few extra shifts or some overtime? Got a great down payment ready? Well, however much you saved for your new pony car, start saving more - you'll need the extra money to spend on tires.
That's because the Mustang will come with a system called Line Lock, which can lock the front brakes electronically, allowing drivers to perform big, dumb, smoky burnouts without moving so much as an inch. It's sort of like launch control, only the average driver might actually use it.
Now, line locks aren't uncommon, particularly in drag racing. Usually, a flip of the switch locks the front brakes. The Mustang, besides offering the system from the factory which is unique in and of itself, looks a bit more involved.
Aluminum lightweighting does, in fact, save fuel
Mon, Apr 14 2014When the best-selling US truck sheds the equivalent weight of three football fullbacks by shifting to aluminum, folks start paying attention. Oak Ridge National Laboratory took a closer look at whether the reduced fuel consumption from a lighter aluminum body makes up for the fact that producing aluminum is far more energy intensive than steel. And the results of the study are pretty encouraging. In a nutshell, the energy needed to produce a vehicle's raw materials accounts for about 10 percent of a typical vehicle's carbon footprint during its total lifecycle, and that number is up from six percent because of advancements in fuel economy (fuel use is down to about 68 percent of total emissions from about 75 percent). Still, even with that higher material-extraction share, the fuel-efficiency gains from aluminum compared to steel will offset the additional vehicle-extraction energy in just 12,000 miles of driving, according to the study. That means that, from an environmental standpoint, aluminum vehicles are playing with the house's money after just one year on the road. Aluminum-sheet construction got topical real quickly earlier this year when Ford said the 2015 F-150 pickup truck would go to a 93-percent aluminum body construction. In addition to aluminum being less corrosive than steel, that change caused the F-150 to shed 700 pounds from its curb weight. And it looks like the Explorer and Expedition SUVs may go on an aluminum diet next. Take a look at SAE International's synopsis of the Oak Ridge Lab's study below. Life Cycle Energy and Environmental Assessment of Aluminum-Intensive Vehicle Design Advanced lightweight materials are increasingly being incorporated into new vehicle designs by automakers to enhance performance and assist in complying with increasing requirements of corporate average fuel economy standards. To assess the primary energy and carbon dioxide equivalent (CO2e) implications of vehicle designs utilizing these materials, this study examines the potential life cycle impacts of two lightweight material alternative vehicle designs, i.e., steel and aluminum of a typical passenger vehicle operated today in North America. LCA for three common alternative lightweight vehicle designs are evaluated: current production ("Baseline"), an advanced high strength steel and aluminum design ("LWSV"), and an aluminum-intensive design (AIV).