Find or Sell Used Cars, Trucks, and SUVs in USA

Chevy 4.3l V6 Automatic Extended Cab Clean Cloth Cd Power Locks & Windows Ac 4x4 on 2040-cars

US $8,950.00
Year:2001 Mileage:108048
Location:

Puyallup, Washington, United States

Puyallup, Washington, United States

Auto Services in Washington

USA Auto Glass Repair ★★★★★

Auto Repair & Service, Windshield Repair, Glass-Auto, Plate, Window, Etc
Address: 10034 Main St, Kingston
Phone: (425) 318-1670

Town Nissan ★★★★★

New Car Dealers, Used Car Dealers
Address: 901 N Mission St, Wenatchee
Phone: (509) 662-5125

Subaru Of Puyallup ★★★★★

Auto Repair & Service, New Car Dealers
Address: 720 River Rd, University-Place
Phone: (253) 286-5901

S K & Sons Inc ★★★★★

Used Car Dealers, Wholesale Used Car Dealers
Address: 10604 15th Ave SW, Retsil
Phone: (206) 241-1803

Rollins Auto Wrecking ★★★★★

Auto Repair & Service, Automobile Parts & Supplies, Automobile Salvage
Address: 20620 Mountain Hwy E, Spanaway
Phone: (253) 655-2610

Rempt Motor Co ★★★★★

Auto Repair & Service, New Car Dealers, Used Car Dealers
Address: 3810 Auburn Way N Ste 403, Milton
Phone: (888) 632-5711

Auto blog

GM patent reveals new two-stage turbocharger

Fri, Jun 24 2016

Modern turbochargers may be some of the best ever made, but performance is something that engineers are always trying to improve. According to GM Inside News, General Motors (GM) is hoping to alleviate some of the negative aspects of a two-stage turbocharger setup with a newly-patented design. The patent, that was filed on May 19, 2016, reveals a clever bypass system that allows the engine, a four-cylinder unit, to optimize both the low-pressure and high-pressure inlets for its respective functions. According to the filing, a conventional two-stage turbocharger setup is engineered to allow both turbines to operate simultaneously at low and mid engine speeds. At high engine speeds, only the low-pressure turbine works. The setup can't isolate either the low or high pressure side, which can impair low-end performance. GM's new two-stage turbocharger setup looks to eliminate this by linking the high-pressure turbo to the exhaust manifold through the high-pressure inlet duct. The low-pressure turbo is attached to the high-pressure turbo by a low-pressure inlet duct, which is linked to a connecting channel. A single actuator that is housed in the exhaust manifold creates a bypass that can opens the high-pressure inlet or close the connecting channel. Depending on what the engine load and speed is, the ECU guides the actuator—a single rotating spindle with discs corresponding to flanges on the high and low pressure sides—to isolate one of the two turbos. Isolating the turbos allow the respective inlets to be engineered for the best possible fluid dynamic performance. The setup should increase performance and decrease lag. There's no word on what car this setup will make an appearance on, but it will most likely be used in premium vehicles before trickling down to the rest of GM's vehicles. Related Video: News Source: GM Inside News, AutoGuide via GM Authority Cadillac Chevrolet GM Technology Sedan turbo patent engine turbocharging

Experimental mid-engine XP-819 Corvette going up for auction

Sun, 17 Feb 2013

It seems to be commonplace that when a new Corvette is in development, rumors swirl about a possible mid-engine layout. As is the case of Chevy's most recent C7 Corvette, these rumors never pan out.
In any case, the idea for a 'Vette with an engine mounted behind the driver can probably all be traced back to a single car, the 1964 XP-819 prototype. Built as an "engineering exercise" back in 1964, the prototype was designed with a rear-mounted engine. History tells us that the idea of a rear-engine Corvette fizzled, and the XP-819 was eventually cut up into pieces and stored at a shop in Daytona Beach, FL.
After sitting for untold years, a restoration project started on the car, and while it isn't yet fully completed, the current owner of the car, Mid America Motorworks, will have the car on display at the 2013 Amelia Island Concours d'Elegance as a "driveable chassis" with hopes of having a fully completed car ready to bring to next year's show.

Diesel Power finds the ultimate modified oil-burner

Sat, 24 Aug 2013

For nine years, Diesel Power magazine has run the Diesel Power Challenge, this year's grindfest being "a week-long torture test that features seven events, nine trucks, 8,000 horsepower, and nearly 15,000 pound-feet of torque." The road to being crowned "the most powerful truck" starts with a dyno run, and then continues through the completion of a CDL-style obstacle course, an eighth-of-a-mile drag race while towing a 10,000-pound trailer, a quarter-mile drag race without a trailer, a fuel economy test in the mountains and finally a sled-pulling test through a 300-foot-long packed-mud pit.
What kind of trucks get into such a fight? Last year's winner, for instance - who upgraded his truck this year to prove he didn't "luck into the win" - drives a 2008 Ford F-250 Super Duty with a 6.4-liter Power Stroke V8 upgraded with a custom intake, Elite Diesel triple turbos and a two-stage nitrous system. Another competitor has a 2005 Dodge Ram 2500 powered by a 5.9-liter Cummins inline-six, upgraded with Garrett turbos, dual-stage nitrous, a seven-inch exhaust stack and twin fans built into the bed to cool the Sun Coast Omega transmission. The numbers on that truck: 1,255 horsepower, and 2,063 pound-feet of torque at the wheels. Naturally, as the image above might suggest, things don't always end well.
You'll find all five videos covering this years challenge below. A scene in the dyno video sums it all up perfectly: a competitor leaves his nitrous on too long and the crew is treated to some ominous poppings, he leans out the window, throws both hands up and shouts, "Amer'ca!"