2007 Drw King Ranch Crew 4x4 Leather Heated Sunroof We Finance 61k Miles on 2040-cars
Vernon, Texas, United States
Engine:8
Vehicle Title:Clear
Fuel Type:Diesel
For Sale By:Dealer
Transmission:Automatic
Make: Ford
Cab Type (For Trucks Only): Crew Cab
Model: F-350
Warranty: Vehicle has an existing warranty
Mileage: 61,447
Sub Model: King Ranch C
Exterior Color: Brown
Disability Equipped: No
Interior Color: Burgundy
Doors: 4
Drive Train: Four Wheel Drive
Ford F-350 for Sale
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 2010 ford super duty f-350  6.8l - flat bed - low milage- red- work truck- clean 2010 ford super duty f-350  6.8l - flat bed - low milage- red- work truck- clean
 4x4 crew cab 6.4l leather sunroof (4) air registers w/positive shut-off(US $40,787.00) 4x4 crew cab 6.4l leather sunroof (4) air registers w/positive shut-off(US $40,787.00)
 2008 ford super duty f-350 lariat 4x4 srw 4wd crew(US $19,995.00) 2008 ford super duty f-350 lariat 4x4 srw 4wd crew(US $19,995.00)
 Extened cab diesel dually long bed tow package Extened cab diesel dually long bed tow package
 Beautiful 2005 f-350 super duty turbo diesel crewcab 4x4 lariat fx4 no reserve Beautiful 2005 f-350 super duty turbo diesel crewcab 4x4 lariat fx4 no reserve
Auto Services in Texas
Woodway Car Center ★★★★★
Woods Paint & Body ★★★★★
Wilson Paint & Body Shop ★★★★★
WHITAKERS Auto Body & Paint ★★★★★
Westerly Tire & Automotive Inc ★★★★★
VIP Engine Installation ★★★★★
Auto blog
NHTSA, IIHS, and 20 automakers to make auto braking standard by 2022
Thu, Mar 17 2016The National Highway Traffic Safety Administration, the Insurance Institute for Highway Safety and virtually every automaker in the US domestic market have announced a pact to make automatic emergency braking standard by 2022. Here's the full rundown of companies involved: BMW, Fiat Chrysler Automobiles, Ford, General Motors, Honda, Hyundai, Jaguar Land Rover, Kia, Mazda, Mercedes-Benz, Mitsubishi, Nissan, Subaru, Tesla, Toyota, Volkswagen, and Volvo (not to mention the brands that fall under each automaker's respective umbrella). Like we reported yesterday, AEB will be as ubiquitous in the future as traction and stability control are today. But the thing to note here is that this is not a governmental mandate. It's truly an agreement between automakers and the government, a fact that NHTSA claims will lead to widespread adoption three years sooner than a formal rule. That fact in itself should prevent up to 28,000 crashes and 12,000 injuries. The agreement will come into effect in two waves. For the majority of vehicles on the road – those with gross vehicle weights below 8,500 pounds – AEB will need to be standard equipment by September 1, 2022. Vehicles between 8,501 and 10,000 pounds will have an extra three years to offer AEB. "It's an exciting time for vehicle safety. By proactively making emergency braking systems standard equipment on their vehicles, these 20 automakers will help prevent thousands of crashes and save lives," said Secretary of Transportation Anthony Foxx said in an official statement. "It's a win for safety and a win for consumers." Read on for the official press release from NHTSA. Related Video: U.S. DOT and IIHS announce historic commitment of 20 automakers to make automatic emergency braking standard on new vehicles McLEAN, Va. – The U.S. Department of Transportation's National Highway Traffic Safety Administration and the Insurance Institute for Highway Safety announced today a historic commitment by 20 automakers representing more than 99 percent of the U.S. auto market to make automatic emergency braking a standard feature on virtually all new cars no later than NHTSA's 2022 reporting year, which begins Sept 1, 2022. Automakers making the commitment are Audi, BMW, FCA US LLC, Ford, General Motors, Honda, Hyundai, Jaguar Land Rover, Kia, Maserati, Mazda, Mercedes-Benz, Mitsubishi Motors, Nissan, Porsche, Subaru, Tesla Motors Inc., Toyota, Volkswagen and Volvo Car USA.
2015 Galpin Ford GTR1
Mon, 25 Aug 2014Last year in Monterey, we met GTR1 for the first time. Galpin Auto Sports pulled the wraps off its Ford GT-based supercar, powered by a twin-turbocharged 5.4-liter V8 good for a whopping 1,024 horsepower and 739 pound-feet of torque. The thing was totally custom-made and reportedly took some 12,000 man hours to create. And there it sat on the Pebble Beach grass, $1,000,000-plus price tag and all.
This year, the Galpin was back, albeit with one big change. That twin-turbo engine? Gone. In its place, a 5.4-liter V8 with a 4.0-liter Whipple supercharger bolted on, delivering an astonishing 1,058 hp and 992 lb-ft of torque on 110-octane fuel. 0-60? 2.9 seconds. Top speed? Somewhere above 225 miles per hour.
"Some things to keep in mind: no stability control, no traction control," were the only warnings given by Galpin's Brandon Boeckmann before taking me on a quick spin in the supercar. And after having my eyes thrown into the back of my skull a few times, laughing hysterically and trying to regain full use of my hearing after my ear drums being bombarded by the apocalyptic roar behind me, Brandon pulled over and said it was my turn, if I was ready to take the wheel.
A cool boost to turbocharger performance
Fri, Jul 17 2015Since the advent of the forced-induction engine, we have been looking for ways to get every drop of performance we can. There are many approaches to getting additional power using better intercooling, water injection, or even adding nitrous oxide. One take on a short instant burst of power is being researched by Mahle and involves providing supercooled air to an engine, which allows it to burn a leaner fuel mixture and produce more power. The supercooling idea is not new and was examined by Ford in 1993 on the Mustang Mach III concept car, then brought up again in 2003 with the SVT F-150 Lightning concept. Ford called its system the SuperCooler; it was designed to work with any turbocharged or supercharged engine equipped with a water-to-air intercooler. The system on the Lightning concept used a small tank of antifreeze that was hooked up to the truck air conditioning compressor. The air conditioning compressor cooled the antifreeze down to about 30 degrees. The other side of the tank was hooked up to the air-to-water intercooler, which usually had a temperature over 100 degrees. Once the antifreeze was circulated from the tank into the intercooler, it would lower the intercooler temperature and provide for a cooler, denser air charge into the engine; the result was around 50 extra horsepower for a burst of about 30 seconds to a minute, depending on the size of the tank. The system for the Lightning was to be offered as a $750 option and would have been targeted towards drag racers and the like, as it could be used for a run down the drag strip and then re-cooled by the time the truck was back in line. The system was fairly non-intrusive – it only weighed about 25 pounds and did not require a new compressor or intercooler. But as with many concepts, it was ultimately scrapped. The technology was always stuck in the back of my mind, but with larger and more powerful engines being produced it could not find its place. With the advent of new fuel economy standards, we have seen small-displacement turbocharged engines pop up and they seem like the perfect candidate for this type of technology. Ford's EcoBoost 1.0-liter three-cylinder turbocharged engine, as used in the Fiesta and Focus, is one such candidate for this technology. It would add a negligent amount of weight but could provide a boost of 10 to 20 horsepower when needed, like merging onto the highway or catching up to traffic.

