1988 Toyota Land Cruiser Base Sport Utility 4-door 4.0l on 2040-cars
Laramie, Wyoming, United States
Body Type:Sport Utility
Vehicle Title:Clear
Engine:4.0L 3956CC l6 GAS OHV Naturally Aspirated
Fuel Type:GAS
For Sale By:Private Seller
Make: Toyota
Model: Land Cruiser
Warranty: Vehicle does NOT have an existing warranty
Trim: Base Sport Utility 4-Door
Options: 4-Wheel Drive, CD Player
Drive Type: 4WD
Mileage: 217,804
Exterior Color: White
Safety Features: Seat belts, Rear Shoulder Seat Belts
Interior Color: Gray
Disability Equipped: No
Number of Cylinders: 6
We still drive it, but are moving across country and can't take it with us.
Runs well, starts well, regularly maintained.
Roof racks, good tread on tires, trailer hitch.
Has rust around wheel wells and rear lift gate.
Toyota Land Cruiser for Sale
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Auto Services in Wyoming
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Auto blog
Toyota to start production of hydrogen vehicles in December
Sun, 08 Jun 2014Toyota's hydrogen fuel cell vehicle will be in showrooms sooner than planned, the Japan Times reporting that production will commence in mid-December with the sedan following "by the end of this year." No reason was given for the new timeline; Toyota has been saying all along that we'd see it in 2015.
The company is said to be "considering" production volume of "dozens of... vehicles per month" at a "likely" price of eight million yen, which is $78,030 US. That is well in line with the numbers thrown around last year, when the target was somewhere between $50,000 and $100,000. Then late last year, during our first drive of the FCHV mule, we wrote that "the official quote... [is] that a price of 'less than 10 million yen is ideal.'"
That alleged $78K is a sizable sum to be one of the early adopters on the hydrogen fuel cell wagon train, but with things moving around so much - and with Toyota publicly citing hydrogen fuel cells as the future - there's plenty of reason to be cautious about that number.
Tesla expects another higher-volume deal with Toyota in next few years
Tue, 09 Sep 2014Four months have passed since Toyota ended its relationship with Tesla Motors, in which the electric-vehicle specialist supplied full lithium-ion battery packs to the Japanese behemoth for its RAV4 EV rollout, of which 2,500 vehicles will be completed. Now, Tesla founder and CEO Elon Musk has been heard suggesting that a future collaboration is likely within the next two to three years, and that it will probably be much larger than the last one.
Both Tesla and Toyota have sung each other's praises in the not-too-distant past, Toyota telling Autoblog back in May, "We have a good relationship with Tesla and will evaluate the feasibility of working together on future projects." According to Automotive News, Musk said of the Japanese giant, "We love working with Toyota... We have a huge amount of respect for them as a company and certainly much to learn."
Interestingly, though, the two automakers have rather divergent strategies for eco-friendly automobiles. Toyota, as you're surely aware, is the clear-cut leader in hybrids and has thrown its massive support in the direction of hydrogen fuel cells, while Tesla has invested heavily in battery-electric technology and high-speed charging stations.
Toyota to buck engine downsizing trend, may go larger and turbo-free
Mon, 14 Oct 2013Turbocharging isn't really Toyota's specialty, and the Japanese automaker isn't being shy about acknowledging it. Koei Saga, a senior managing officer in charge of drivetrain research and development, says that eschewing turbos and increasing displacement of engines using the Atkinson cycle can produce better power gains without sacrificing fuel economy, Automotive News reports.
Toyota is investing heavily in larger-displacement Atkinson-cycle engines in addition to turbocharged engines, but Saga doesn't think the automaker will use turbocharging across many product lines. He apparently remains unconvinced that the technology "makes the world better."
In Toyota's eyes then, Atkinson cycle engines do make the world better, and here's how. Their pistons complete four processes - intake, compression, power and exhaust - in one revolution of the crankshaft, and the power stroke is longer than the compression stroke. Traditional Otto cycle engines require two crankshaft revolutions to accomplish those same four operations and have equal-length compression and power strokes. Atkinson cycle engines are more efficient, but less power dense, though increasing displacement can offset that shortfall.