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2011 Ford Expedition Xlt 8-passenger Park Assist 51k Mi Texas Direct Auto on 2040-cars

US $26,980.00
Year:2011 Mileage:51910 Color: Mirrors
Location:

Stafford, Texas, United States

Stafford, Texas, United States

Auto Services in Texas

Your Mechanic ★★★★★

Auto Repair & Service, Automobile Parts & Supplies, Automotive Tune Up Service
Address: 11402 Perrin Beitel Rd, Cibolo
Phone: (210) 590-3260

Yale Auto ★★★★★

Auto Repair & Service
Address: 2510 Yale St, Aldine
Phone: (281) 607-1252

Wyatt`s Discount Muffler & Brake ★★★★★

Auto Repair & Service, Automobile Parts & Supplies, Mufflers & Exhaust Systems
Address: 2506 Old Iowa Park Rd, Iowa-Park
Phone: (940) 766-6393

Wright Auto Glass ★★★★★

Auto Repair & Service, Windshield Repair, Towing
Address: 322 E Northwest Hwy, Bartonville
Phone: (817) 421-2834

Wise Alignments ★★★★★

Auto Repair & Service, Automobile Parts & Supplies, Auto Oil & Lube
Address: 3172 S Fm 730, Newark
Phone: (866) 595-6470

Wilkerson`s Automotive & Front End Service ★★★★★

Auto Repair & Service
Address: 305 N East St, Haltom-City
Phone: (817) 275-2451

Auto blog

Report: GM struggling to market turbo technology

Tue, 20 Apr 2010

In the automotive realm, marketing can sometimes prove just as important as the actual product. Take, for instance, Ford's well regarded EcoBoost technology, which couples turbocharging with direct injection to produce more horsepower and reduce fuel consumption. Would it surprise you to hear that General Motors has had similar technology on the market for over three years?
It's true. GM's first turbocharged, direct injected powerplants hit the market for the 2007 model. The 2.0-liter Ecotec mills put down an impressive 260 horsepower and a matching 260 pound-feet of torque, and they were lauded by the press in the engine bays of the Pontiac Solstice, Saturn Sky, Chevrolet Cobalt SS and Chevrolet HHR SS. But few people outside a core group of enthusiasts actually remember this fact.
Says Uwe Grebe, executive director of GM's global advanced engineering, "We didn't have a badge and say, 'This is the most important thing we will put on all our brochures.'" Ford, however, did just that, and it's EcoBoost engines are right at the tips of all our tongues when we discuss today's most advanced powerplants. So, how does The General fix its mistake?

Ford builds two-millionth EcoBoost engine

Tue, 17 Sep 2013

Ford's EcoBoost engine lineup is only four years old, but it is growing into an important and popular global engine. As proof of its popularity, Ford just produced its 2 millionth EcoBoost engine - a 2.0-liter inline four-cylinder - which rolled off the assembly line in Louisville, Kentucky under the hood of an Escape.
Ford now offers five EcoBoost engines around the world ranging from the 1.0-liter inline-three to the twin-turbo 3.5-liter V6, and the automaker is expanding production of two of its engine lines to keep up with demand. Earlier this year, Ford announced that the 2.0-liter EcoBoost would be built in Cleveland, Ohio starting in 2014 and, more recently, Ford said that it will be doubling production of the 1.0-liter EcoBoost in Germany. That turbo-three will also be produced in China at a new Ford engine plant in Chongqing.
Scroll down for Ford's full press release on this EcoBoost production milestone, including a breakdown of where all the engines were made.

Nuclear-powered concept cars from the Atomic Age

Thu, 17 Jul 2014

In 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.