2014 Ford Fusion Se on 2040-cars
602 W Rose Ave, Crane, Missouri, United States
Engine:2.0L I4 16V GDI DOHC Turbo
VIN (Vehicle Identification Number): 3FA6P0H95ER238545
Stock Num: 14609
Make: Ford
Model: Fusion SE
Year: 2014
Exterior Color: Deep Impact Blue Metallic
Interior Color: Ebony
Options: Drive Type: FWD
Number of Doors: 4 Doors
Mileage: 5
Ford Fusion for Sale
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Auto Services in Missouri
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Auto blog
Ford E-Series chassis cabs and cutaways to survive mass Transit onslaught
Fri, 18 Apr 2014In March 2013, Ford announced we'd be getting chassis cab and cutaway versions of the Transit. Since incoming Transit vans will soon be rolling over the grave of the E-Series van, it was assumed that all E-Series models would go six feet under as well. According to a report from PickupTrucks.com, however, that's not the case, the report claiming that the highly modifiable E-350 and E-450 chassis cab and cutaway versions will continue being produced in Avon Lake, Ohio "at least until 2020."
Being decades old, the be-cabbed E-Series platform has found its way under an army of heavy-duty shuttle buses, work truck and ambulances. Ford spokeswoman Jessica Enoch verified the production horizon, telling Autoblog that the particular E-Series configuration "are a higher GVWR than the Transit chassis cab and cutaway (available this summer), which is more Class 2 and a new segment for us." So there you have it.
Aussie Ford Falcon GT shows its rear end to Lamborghini Gallardo
Sun, 27 Apr 2014When Ford Australia announces, as it did recently, that it wants to celebrate the end of its Ford Performance Vehicle division with a Falcon FPV GT-F that celebrates big-bore origins of the nameplate, it's talking about the kind of car in this video.
At some point the classic Falcon GT - said to be an XY series - was invited to a test of acceleration against a Lamborghini Gallardo. At the very least, the Falcon GT had a 351 cubic-inch motor and 300 horsepower, but whatever this guy's got under the hood of his yellow sedan makes has him so confident that he doesn't even move his elbow from its resting place on the door.
You'll find a reminder of Ford Australia's heyday, a raucous exhaust note and some NSFW language in the short video below.
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).