2013 Ford Fusion / Hybrid Se / Navigation / Warranty on 2040-cars
Elkhorn, Nebraska, United States
Engine:2.0L 1999CC 122Cu. In. l4 ELECTRIC/GAS DOHC Naturally Aspirated
For Sale By:Dealer
Body Type:Sedan
Fuel Type:ELECTRIC/GAS
Transmission:Automatic
Year: 2013
Warranty: Vehicle has an existing warranty
Make: Ford
Model: Fusion
Options: CD Player
Trim: SE Hybrid Sedan 4-Door
Safety Features: Side Airbags
Power Options: Power Locks
Drive Type: FWD
Mileage: 16,014
Number of Doors: 4
Sub Model: 4dr Sdn Hybr
Exterior Color: Gray
Number of Cylinders: 4
Interior Color: Black
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Auto Services in Nebraska
Wilhelm Auto Repair ★★★★★
U-Stop Convenience Shop ★★★★★
Keckler Oil Co ★★★★★
Just Call Steve! ★★★★★
Jensen Tire & Auto ★★★★★
Hiway Service ★★★★★
Auto blog
Ford confirms 1.5-liter EcoBoost four-cylinder engine for 2014 Fusion
Thu, 11 Apr 2013Earlier this week, reports were swirling 'round the internet about the 2014 Ford Fusion getting a new 1.5-liter three-cylinder EcoBoost engine. That was... half correct. Ford today confirmed that the 2014 Fusion is, in fact, getting a new 1.5-liter EcoBoost mill, but it has four cylinders, not three.
The new 1.5-liter engine will be the fifth EcoBoost powerplant from Ford Motor Company. Initially to be built at the automaker's Craiova, Romania plant, it will also be offered in the Fusion's twin, the Mondeo, in other markets. This engine will debut at the Shanghai Motor Show next month, and the 1.5-liter is of particular importance in the Chinese market - there is significant tax relief in the People's Republic for vehicles powered by engines with a capacity of 1.5 liters or less.
At a media briefing Thursday, Ford declined to divulge exact power or fuel economy numbers, though Joe Bakaj, vice president of powertrain engineering, told Autoblog that power output should be similar to that of the current 1.6-liter inline-four, and that overall efficiency will be "better than the 1.6." Our earlier report stated that the 1.5-liter four will produce 177 horsepower and 177 pound-feet of torque - losses of 1 hp and 7 lb-ft versus the 1.6-liter engine. Ford states that the 1.5-liter four will feature many of the same technologies used on the company's 1.0-liter EcoBoost inline-three, including an integrated exhaust manifold that recaptures much of the engine's heat.
Ford and Mercedes join Renault in French emissions investigation
Thu, Jan 21 2016The French government is investigating certain models from Ford, Mercedes-Benz, and Renault because they allegedly produce more nitrogen oxide than the country's pollution rules allow, according to Automotive News, citing a French newspaper. After VW's emissions scandal, French regulators began checking more vehicles for evidence of defeat devices and excessive real-world pollution. According to Automotive News, the Mercedes S350 allegedly showed inconsistent results across these tests, and a Ford C-Max had NOx levels five times over the limit. The Renault Captur crossover, Espace, and an unnamed utility vehicle also had results that were too high. The French testing for this investigation includes an on-road emissions check that's not part of the EU's normal evaluations, which some automakers claim is unfair. "Unofficial on-road testing has varying conditions and can produce significantly different results," a Ford of Europe spokesman told Automotive News. Renault representatives met with French officials on January 18 to explain the situation. The company later submitted a plan to recall 15,800 examples of the diesel Captur, and said it would offer a voluntary software upgrade for about 700,000 other vehicles, according to Automotive News. Representatives from Ford and Mercedes will meet with the government soon, too. Renault's stock price plunged last week after investors heard that French regulators searched three of the automaker's sites as part of the emissions investigation. The stockholders feared an environmental scandal like the one currently embroiling Volkswagen. There's one major difference – as of now, there's no evidence Renault equipped any of the polluting models with defeat devices. Related Video:
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).
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