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

1989 Toyota Land Cruiser Base Sport Utility 4-door 4.0l on 2040-cars

US $8,000.00
Year:1989 Mileage:181473
Location:

Columbus, Ohio, United States

Columbus, Ohio, United States
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Auto Services in Ohio

Yocham Auto Repair ★★★★★

Auto Repair & Service
Address: 425 High St, North-Robinson
Phone: (419) 683-8123

Williams Auto Parts Inc ★★★★★

Automobile Parts & Supplies, Used & Rebuilt Auto Parts, Automobile Electrical Equipment
Address: 127 S Detroit Ave, Fort-Recovery
Phone: (866) 943-9403

West Chester Autobody ★★★★★

Auto Repair & Service, Automobile Body Repairing & Painting, Windshield Repair
Address: 9366 Cincinnati Columbus Rd, Mason
Phone: (513) 268-0219

Valvoline Instant Oil Change ★★★★★

Auto Repair & Service, Auto Oil & Lube, Automotive Tune Up Service
Address: 6449 Glenway Ave, Harrison
Phone: (513) 574-1024

Valvoline Instant Oil Change ★★★★★

Auto Repair & Service, Auto Oil & Lube, Automotive Tune Up Service
Address: 24866 Lorain Rd, Lakewood
Phone: (440) 777-3636

Sweeting Auto & Tire ★★★★★

Auto Repair & Service, Automobile Parts & Supplies, Tire Dealers
Address: 301 S Main St, Tremont-City
Phone: (937) 652-1386

Auto blog

Weekly Recap: Toyota propels hydrogen fuel cells

Sat, Jan 10 2015

Toyota is serious about hydrogen fuel cells, and it wants the auto industry to follow suit. The Japanese automaker said this week it's releasing 5,680 fuel cell patents from around the world, including technologies used on its upcoming sedan, the 2016 Mirai. The move is unusual, but not unprecedented, as Tesla similarly released its electric vehicle patents last year. The idea for Tesla, and now for Toyota, is to spur development of alternative propulsion. "By eliminating traditional corporate boundaries, we can speed the development of new technologies and move into the future of mobility more quickly, effectively and economically," said Bob Carter, Toyota Motor Sales senior vice president of automotive operations, in a statement. Toyota's fuel cell patents will be free to use through 2020, though patents related to producing and selling hydrogen will remain open forever. Toyota said it would like companies that use its patents to share their own hydrogen patents, but won't require it. "What Toyota's doing is really a logical move, and really a good move for the industry," Devin Lindsay, principal powertrain analyst with IHS Automotive, told Autoblog. The announcement was made at the Consumer Electronics Show in Las Vegas. It comes as Toyota prepares to launch the hydrogen-powered Mirai in a limited number late this year in California. The launch will be extended to the Northeastern United States next year. Toyota also has announced plans to support networks of fueling stations in each region to try to smooth consumer adoption. The Mirai has a 300-mile range on a tank of hydrogen, and it takes about five minutes to refill. Fuel cells have been receiving increased attention recently, and Audi and Volkswagen debuted hydrogen-powered cars at the 2014 Los Angeles Auto Show. Honda, another proponent of the technology, also showed its updated FCV concept in November in Japan. The company, however, has delayed its fuel cell sedan a year until 2016. Like Toyota, Honda says its hydrogen-powered car will have a range of 300 miles or more. Meanwhile, Hyundai currently offers leases for fuel-cell powered Tucsons, which have a 265-mile range, in Southern California. Despite the optimism some automakers have for fuel cells, the technology still faces barriers. A lack of filling stations has long held it back, and many consumers are not familiar with the potential benefits.

2015 Toyota Camry set to circle NASCAR track near you

Mon, 13 Oct 2014

Toyota recently introduced the all-new 2015 Camry for the street, so it follows that it should want to promote its new bread-and-butter sedan by putting it out on the racetrack as well. And that's just what it's done here with the release of the new Toyota Camry for the NASCAR Sprint Cup Series.
The new Camry represents the first reskin of the standard stock car chassis since the Gen-6 model was introduced in 2012. Toyota's Calty Design studio worked closely with series organizers to determine which parts could be redesigned to more closely resemble the new production model, and what you see here is the result. Since it is based on the same control chassis as all the others, the Camry's skin is applied over a steel tube frame and powered by an old-school 5.86-liter pushrod V8 mated to a four-speed manual gearbox.
Although the idea of a Japanese automaker in American stock car racing didn't initially get the warmest reception from some of the good ol' boys when it first entered the series back in 2007, it has by now become a staple of the NASCAR circuit. After all, it's hard for even the most patriotic of racing fans to argue with the US-built Camry's ranking as one of the most American cars by content on the market.

Toyota drops detail about 414-hp Hybrid-R concept powertrain

Fri, 30 Aug 2013

The Toyota Yaris Hybrid-R Concept has been teased already, offering up little glimpses and details of the Frankfurt-bound vehicle. And while those few, shadowy shots have been great, we've really wanted to know how this hatchback would deliver its promised 400-plus horsepower. Under hood sits a 1.6-liter, race-derived, direct-injection, turbocharged four-cylinder that powers the front wheels. Sounds peachy, but with 414 horsepower splashed across the page, we're going to need something more than a 1.6-liter, turbo four.
A supercapacitor, developed from the Toyota TS030 Hybrid Le Mans racer sits in place of a hybrid's traditional battery packs. The benefit, according to Toyota, is that power can be more rapidly absorbed and discharged than in a traditional battery system, like nickel metal-hydride.
The gas engine is joined by a trio of 60-horsepower electric motors. Two of the them power the rear wheels, while the third sits between the engine and the six-speed, sequential gearbox. Developing the same amount of power as the rear-axle motors, this centrally located motor channels power to the race-derived supercapacitor during braking, and ships extra grunt to the rear wheels under acceleration when the front wheels start to lose grip. Besides the distributive power of the central motor, the rear electric motors can adjust the amount of torque flowing to each wheel, much like a differential.