New 4x4 Crewcab Luxury Package Navigation Leather Sunroof Call 888 843 0291 on 2040-cars
Atlanta, Georgia, United States
Vehicle Title:Clear
Engine:6.2L 6210CC 379Cu. In. V8 GAS SOHC Naturally Aspirated
For Sale By:Dealer
Body Type:Crew Cab Pickup
Fuel Type:GAS
Make: Ford
Cab Type (For Trucks Only): Crew Cab
Model: F-150
Warranty: Vehicle has an existing warranty
Trim: SVT Raptor Crew Cab Pickup 4-Door
Options: Leather Seats
Drive Type: 4WD
Power Options: Power Windows
Mileage: 11
Sub Model: SVT Raptor
Exterior Color: Tan
Number of Cylinders: 8
Interior Color: Black
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Auto blog
How Ford secretly used customers to test its aluminum F-150 [w/video]
Fri, 30 May 2014Automakers getting clever about disguising development vehicles isn't anything new. Between mules wearing the sheetmetal of other cars and prototypes decked out in as much camouflage as is practical, automakers know how to make it very difficult for the general public to get an exact idea of what kind of vehicle is in development. Ford, though, is rapidly becoming the master.
We knew that the Blue Oval originally tested the durability of the aluminum construction being used for the 2015 F-150 by building an all-aluminum 2014 truck and entering it in the Baja 1000 off-road race. That's no longer a secret. What we didn't know, though, is that the aluminum development dates back to before even that, and that some of the people in question had no idea what it was they were working with.
Ford says this is the first time prototypes have ever been handed over to the public.
Shelby GT350R offers first mass-produced carbon fiber wheels
Fri, Jul 10 2015In the world of race engineering, reducing total weight is good, but reducing unsprung weight is flippin' fantastic. That's the reason Ford is pushing the envelope in terms of technology for the Shelby GT350R's wheels. Joining the likes of Koenigsegg in the offering, Ford has teamed with Australian outfit Carbon Revolution to produce the CF rollers en masse for the first time. Destined for the hubs of the new Shelby GT350R, the new hoops weigh just 18 pounds each, versus the 33-lbs weight of a similar aluminum wheel. On top of slashing up to 60 pounds in unsprung weight, there's such a reduction in rotational inertia – 40 percent, versus aluminum wheels – that Ford actually has to recalibrate the magnetic ride control system and springs. Thanks to, we're guessing, scenes of crashed Formula One cars disintegrating and spewing shards of carbon fiber all over the track, Ford seems quite keen to do away with the idea that CF is strong, but brittle. The company conducted extensive shock testing, ramming a wheel into a curb at speed. According to the Blue Oval, the lightweight wheel allowed the suspension to respond so quickly that the impact was "greatly diminished," causing the tester to run the experiment again, thinking there'd been a mistake. After recording brake rotor temperatures of 900 degrees Celsius (over 1,650 degrees Fahrenheit, or well past the point that aluminum or magnesium would melt) during testing, Ford and Carbon Revolution actually redesigned the wheels to "a thermal standard more suitable for motorsports," by adding an "incredibly thin, nearly diamond-hard coating that reliably shields the resin from heat." The same process was used to protect engine turbine blades on the Space Shuttle. While the work by Ford and Carbon Revolution should make GT350R customers excited, the work being done here could have serious implications for performance cars in the future. That's the real takeaway here, and is something that should leave fans of all performance vehicles excited.
Check out Ford's fully automated self-parking car [w/video]
Wed, 09 Oct 2013As automakers continue to find uses for autonomous and semi-autonomous vehicle technology, Ford of Europe has announced that it is developing a self-parking system for future use. More advanced than the Active Park Assist already offered in many Ford products, the new Fully Assisted Parking Aid can take full control of the vehicle and can navigate angled and perpendicular parking spots.
While today's Active Park Assist can only parallel park with the driver controlling the gas, brake and gear selection, Fully Assisted Parking Aid can operate steering, gas, brake and gear selection all while making sure the car is properly parked in the intended space. As with APA, the driver pushes a button to make the car look for a proper spot (at speeds of up to 18 miles per hour), and when an adequate space is located, the operator pushes another button (either inside the car or outside via remote control) for the car to park itself - the button must be pressed throughout the whole parking maneuver. Even though Ford says that the car can effect gear selections on its own, the system must still start from Neutral, and the automaker isn't saying whether the car can put itself into Park when done or put itself in Drive when the operator is ready to go.
Ford is also taking the opportunity to announce its new Obstacle Avoidance technology. This automated system is able to detect objects - including pedestrians - in the road, warn drivers of said objects and, if needed, stop and steer automatically to avoid hitting the obstacle. Both systems are still in the prototype phase, so there is no word as to when we could see either on a production vehicle.




























