1968 Ford Thunderbird Landau on 2040-cars
Tempe, Arizona, United States
Body Type:Coupe
Vehicle Title:Clear
Engine:429 ci
Number of Cylinders: 8
Make: Ford
Model: Thunderbird
Trim: Landau
Power Options: Air Conditioning, Power Locks, Power Windows, Power Seats
Mileage: 93,180
Warranty: Vehicle does NOT have an existing warranty
Exterior Color: Yellow
Drive Type: RWD
Interior Color: Dark Green
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Auto Services in Arizona
Village Automotive INC ★★★★★
Victory Auto Body ★★★★★
Thunderbird Automotive Services #2 ★★★★★
Thiem Automotive Specialist ★★★★★
Shuman`s Auto Clinic ★★★★★
Show Low Ford Inc ★★★★★
Auto blog
Ken Block's 1965 Ford Mustang Hoonicorn RTR and CR Supercars Villain are retro done right
Wed, 05 Nov 2014Gymkhana king Ken Block has had a pretty simple car history in his trademark videos, starting out with Subaru Impreza rally cars before moving into Ford Focus racers for the past four installments. His next video, though, Gymkhana Seven, kind of goes back in time.
Rather than the cutting-edge rally racers of past videos, Block will pilot a heavily modified 1965 Ford Mustang, called the Hoonicorn. How heavily modified is it? Well, Block's Hooligan Racing Division, ASD Motorsports and Vaughn Gittin Jr.'s RTR, spent two years working on it, ditching the standard engine and rear-wheel-drive layout and replacing it with a 410-cubic-inch Roush Yates V8. Yes, that's a NASCAR engine, and it produces 845 horsepower.
A NASCAR-powered Mustang would be news in itself, but it's the other powertrain changes made by Block and Co. that really makes headlines. Power is channeled through a one-off Sadev transmission and all-wheel-drive system, meaning that Block has basically married a NASCAR stock car with a WRC racer. ASD also developed the customized suspension, tubular chassis and roll cage. The wide Mustang body is the work of RTR and Block's own Hoonigan Racing Division, while the 18-inch fifteen52 wheels are shod in Pirelli Trofeo R tires that use a specialized compound exclusive to Block.
Nuclear-powered concept cars from the Atomic Age
Thu, 17 Jul 2014In the 1950s and early 60s, the dawn of nuclear power was supposed to lead to a limitless consumer culture, a world of flying cars and autonomous kitchens all powered by clean energy. In Europe, it offered the then-limping continent a cheap, inexhaustible supply of power after years of rationing and infrastructure damage brought on by two World Wars.
The development of nuclear-powered submarines and ships during the 1940s and 50s led car designers to begin conceptualizing atomic vehicles. Fueled by a consistent reaction, these cars would theoretically produce no harmful byproducts and rarely need to refuel. Combining these vehicles with the new interstate system presented amazing potential for American mobility.
But the fantasy soon faded. There were just too many problems with the realities of nuclear power. For starters, the powerplant would be too small to attain a reaction unless the car contained weapons-grade atomic materials. Doing so would mean every fender-bender could result in a minor nuclear holocaust. Additionally, many of the designers assumed a lightweight shielding material or even forcefields would eventually be invented (they still haven't) to protect passengers from harmful radiation. Analyses of the atomic car concept at the time determined that a 50-ton lead barrier would be necessary to prevent exposure.
Ford using robot drivers to test durability [w/video]
Sun, 16 Jun 2013In testing the durability of its upcoming fullsize Transit vans, Ford has begun using autonomous robotic technology to pilot vehicles through the punishing courses of its Michigan Proving Grounds test facility. The autonomous tech allows Ford to run more durability tests in a single day than it could with human drivers, as well as create even more challenging tests that wouldn't be safe to run with a human behind the wheel.
The technology being used was developed by Utah-based Autonomous Solutions, and isn't quite like the totally autonomous vehicles being developed by companies like Google and Audi for use out in the real world. Rather, Ford's autonomous test vehicles follow a pre-programmed course and their position is tracked via GPS and cameras that are being monitored from a central control room. Though the route is predetermined, the robotic control module operates the steering, acceleration and braking to keep the vehicle on course as it drives over broken concrete, cobblestones, metal grates, rough gravel, mud pits and oversize speed bumps.
Scroll down to watch the robotic drivers in action, though be warned that you're headed for disappointment if you expect to see a Centurion behind the wheel (nerd alert!). The setup looks more like a Mythbusters experiment than a scene from Battlestar Galactica.