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4 Dr Suv Automatic Gasoline 5.7l Dohc Efi 32-valve I-force V8 Engine W on 2040-cars

Year:2010 Mileage:89599 Color: Silver Sky Metallic
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Rick Hendrick Toyota Scion, 1969 Skibo Road, Fayetteville, NC 28314

Rick Hendrick Toyota Scion, 1969 Skibo Road, Fayetteville, NC 28314
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Meet the Most Elegant Automobile, and it's for sale

Sat, 08 Jun 2013

Alright, so maybe "most elegant" is a bit of a stretch, but we feel safe in calling the 1992 Toyota Paseo in the video below an "automobile." High praise, we know. Still, it's clear someone loves the awkward little coupe enough to produce a hilarious video to sell the thing. Henry Floyd worked up a quick parody of the over-the-top luxury car ads we all know and loathe, and while the finished product is a little skimpy on details like price or location, it certainly doesn't hold back on the exposition.
Hell, if we didn't already have a parade of horrible ideas floating around our collective driveways, we might even be convinced to give this little heap a new home. You can check out the ad for yourself below, just don't be surprised if you find yourself with a burning desire to own a Paseo.

Toyota Camry, Lexus RX to get aluminum parts

Tue, 23 Sep 2014

Ah, 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.

Tougher than steel: Wood pulp could make lighter auto parts

Tue, Aug 15 2017

KYOTO, Japan — The global push among carmakers to make ever lighter vehicles is leading some auto suppliers in Japan to turn to what seems like an unlikely steel substitute — wood pulp. Japanese researchers and auto component makers say a material made from wood pulp weighs just one-fifth of steel and can be five times stronger. The material - cellulose nanofibers — could become a viable alternative to steel in the decades ahead, they say, although it faces competition from carbon-based materials, and remains a long way from being commercially viable.> Related: Jay Leno drives the Renew cannabis car — hemp you can't dent Reducing the weight of a vehicle will be critical as manufacturers move to bring electric cars into the mainstream. Batteries are an expensive but vital component, so a reduction in car weight will mean fewer batteries will be needed to power the vehicle, saving on costs. "Lightweighting is a constant issue for us," said Masanori Matsushiro, a project manager overseeing body design at Toyota. "But we also have to resolve the issue of high manufacturing costs before we see an increased use of new, lighter-weight materials in mass-volume cars."A NEW PROCESS Researchers at Kyoto University and major parts suppliers such as Denso Corp, Toyota's biggest supplier, and DaikyoNishikawa Corp, are working with plastics incorporated with cellulose nanofibers — made by breaking down wood pulp fibers into several hundredths of a micron (one thousandth of a millimeter). Cellulose nanofibers have been used in a variety of products ranging from ink to transparent displays, but their potential use in cars has been enabled by the "Kyoto Process," under which chemically treated wood fibers are kneaded into plastics while simultaneously being broken down into nanofibers, slashing the cost of production to roughly one-fifth that of other processes. "This is the lowest-cost, highest-performance application for cellulose nanofibers, and that's why we're focusing on its use in auto and aircraft parts," Kyoto University Professor Hiroaki Yano, who is leading the research, told Reuters in an interview. The university, along with auto parts suppliers, are currently developing a prototype car using cellulose nanofiber-based parts to be completed in 2020.