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Ford Taurus for Sale
- 2003 ford taurus ses(US $4,900.00)
- Taurus ses low 94k miles flex fuel old school cheap transportation no reserve
- 1999 ford taurus lx sedan 4-door 3.0l (low miles)
- 2013 ford taurus limited navigation rearcam roof bluetooth heated ac seats 17k(US $22,900.00)
- 1995 ford taurus, no reserve
- 2013 ford taurus limited navigation rearcam bluetooth heated ac seats sync 27k(US $20,900.00)
Auto Services in Louisiana
Walker`s Wrecking Yard & Auto Parts ★★★★★
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Auto blog
Ford recalls over 680,000 Ford Fusions, Mondeos, and Lincoln MKZs for seat belt pretensioners
Fri, Dec 2 2016Update: We spoke with a Ford representative who said that owners will be notified by mail during the week of January 16 . Dealers will also have the fix available at the same time. Owners can bring in their vehicles to dealers for an evaluation in the mean time. The main text has been updated to reflect this. The Basics: Ford is recalling 680,872 2013-2016 Ford Fusions, 2015-2016 Ford Mondeos, and 2013-2015 Lincoln MKZ s for an issue with front driver-side and passenger-side seat belt pretensioners. The Problem: The seat-belt pretensioners did not have sufficient insulation applied. When the pretensioners are activated, the heat generated can cause the cables connected to the belts to separate, which in turn can prevent the seat belts from effectively restraining the occupant. This can lead to injuries. Injuries/Deaths: Ford reports two accidents and two injuries have occurred that are related to this recall. The fix: A dealer technician will inject an insulation coating around the pretensioner. This should effectively keep the heat away from the cables, ensuring the seat belt will properly restrain the user in a collision. If you own one: Affected owners will be notified by mail on the week of January 16. Dealers will have the fix available that week, and owners will be able to bring in their vehicles for the fix to be implemented free of charge. 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).
Ford finds flex-fuel engine design plays big role in emissions output
Mon, Jan 6 2014How bad is ethanol for your engine? There's been a lot of debate on this issue as the US considers upping the biofuel content in the national gasoline supply from 10 percent (E10) to 15 percent (E15). The ethanol industry and some scientists say higher ethanol blends show no "meaningful differences" in new engines while the oil industry says ethanol creates health risks. Researchers working at the Ford Research and Innovation Center decided to take a closer look at how a wide range of gas-ethanol blends - E0, E10, E20, E30, E40, E55 and E80 - affected the emissions coming out of a flex-fuel 2006 Mercury Grand Marquis. To see the full report, printed in the journal Environmental Science & Technology, requires payment, but there is an abstract and Green Car Congress has some more details. The gist is that, "with increasing ethanol content in the fuel, the tailpipe emissions of ethanol, acetaldehyde, formaldehyde, methane, and ammonia increased." At least NOx and NMHC emissions decreased. The researchers say that the effects are due to the fuel and "are expected for all FFVs," but that the way that a manufacturer calibrates the engine will affect NOx, THC, and NMOG emissions. It's this last bit that's important, since the researchers found, "Higher ethanol content in gasoline affects several fundamental fuel properties that can impact emissions. ... These changes can have positive or negative effects that can depend on engine design, hardware, and control strategy. In addition to direct emissions impacts, higher ethanol content fuel can also provide more efficient combustion and overall engine operation under part-load conditions and under knock-limited higher-load conditions." So, as we head towards more ethanol in our fuel supply (maybe), manufacturers are going to need to learn how to burn it most efficiently.