2010 Blue Grade! on 2040-cars
Little Rock, Arkansas, United States
Vehicle Title:Clear
Engine:5.7L 5663CC 345Cu. In. V8 FLEX DOHC Naturally Aspirated
For Sale By:Dealer
Body Type:Crew Cab Pickup
Fuel Type:FLEX
Interior Color: Other
Make: Toyota
Model: Tundra
Cab Type (For Trucks Only): Crew Cab
Trim: Base Crew Cab Pickup 4-Door
Drive Type: 4WD
Number of Doors: 4
Mileage: 52,887
Sub Model: Grade
Number of Cylinders: 8
Exterior Color: Blue
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Auto Services in Arkansas
Toyota of Fayetteville ★★★★★
Satterfield Motor Co. ★★★★★
Safelite AutoGlass - Bentonville ★★★★★
S & F Auto Sales ★★★★★
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Auto blog
Aston CEO claims Cygnet cancelled because Toyota is dropping iQ in 2014
Sun, 27 Oct 2013While slow sales and a $50,000 price tag may have been contributing factors to the Aston Martin Cygnet being cancelled last month, Aston Martin CEO Ulrich Bez is pointing the finger at Toyota for the demise of this luxurious little city car. In a discussion with Autocar, Bez is quoted as saying that the ultimate reason the Cygnet was cut is because Toyota plans on dropping the iQ (on which the Cygnet is based) in 2014 - a claim denied by the Japanese automaker.
Interestingly, the article also cites another publication reporting that a Toyota importer in the Netherlands heard the same news as Bez, and it has already stopped importing the cars. If the European Toyota iQ is cancelled, that would likely spell the end of the slow-selling Scion iQ in the US, which has sold just 3,365 units through September (a drop of 51 percent year over year).
Regardless of why production of the Cygnet ended, Bez also says that a lack of support from Toyota on the project prevented it from being offered in the US or receiving a supercharged engine, which are two factors that likely would have made the car appealing to more buyers.
Toyota Camry, Lexus RX to get aluminum parts
Tue, 23 Sep 2014Ah, aluminum. The lightweight, strong material has long held a following within the premium ranks, but as Ford prepares to launch an aluminum F-150, the material is gaining acceptance among more mainstream automakers. Toyota is one such brand, with a new report indicating that the Japanese giant will add aluminum bits and bobs to some of its upcoming vehicles.
These won't be full, aluminum-intensive treatments like the F-150, however. Automotive News reports that an aluminum hood and liftgate will be coming to the 2016 Lexus RX, and following that, the Camry will get a bonnet built from Element 13 for model year 2018.
As AN points out, Toyota is no stranger to aluminum, using it in Japanese-built models like the Prius and Scion FR-S. The RX and Camry, though, will mark the first time the company's North American factories will use the material, and they'll do so on a significantly larger scale, owing to the higher volumes that the Camry and RX represent.
Toyota drops detail about 414-hp Hybrid-R concept powertrain
Fri, 30 Aug 2013The 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.