1991 Toyota Mr2 2.2l With Turbo on 2040-cars
Syracuse, Utah, United States
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This is probably one of the best deals on eBay. This is a 1991 mr2 2.2L with a Turbo the engine was completely rebuild by myself all new bearings and gaskets the head was done by a machine shop. It has new a oil pump, water pump, timing belt, all for cross drill and slotted rotors, pads, stage 3 clutch kit, and ARP head studs to handle the extra boost. Since it is a 2.2L and not the 2.0L its only build to handle about 300hp if you want to go higher I was told you need to go with the 2.0 head. Right now I'm running it at about 5psi but you could probable run it at 10 or 15psi.
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Toyota, Mazda partner to build EVs at new $1.6 billion U.S. plant
Fri, Aug 4 2017TOKYO — Toyota and Mazda plan to build a $1.6 billion U.S. assembly plant, the two said on Friday, as part of an alliance that will also see the Japanese automakers jointly develop electric vehicle technologies. The two will take small stakes in each other as part of the tie-up: Toyota, the world's second-largest automaker by vehicle sales last year, will take a 5 percent share of Mazda, extending its dominance in Japan's auto sector. Mazda will take a 0.25 percent share of its larger rival. The plant, something of a surprise at a time of overcapacity in the U.S. market, will be a boost to U.S. President Donald Trump, who campaigned on promises to increase manufacturing and expand employment for American autoworkers. The plant will be capable of producing 300,000 vehicles a year, with production divided between the two automakers, and employ about 4,000 people. It will start operating in 2021. The electric vehicles cooperation, meanwhile, comes as the tightening of global emissions regulations prompts more automakers to develop battery powered cars, as the industry struggles with hefty research costs and intense competition from technology companies over technology like self-driving cars. As part of the agreement, Toyota and Mazda will also work together to develop in-car information technologies and automated driving functions. Toyota, Japan's biggest auto company, has been forging alliances with smaller Japanese rivals for several years, effectively engineering a loose consolidation of the Japanese auto sector. It already owns a 16.5 percent stake in Subaru, Japan's No. 6 automaker, with which it also has a development partnership. Toyota is also courting compact car maker Suzuki to cooperate on R&D and parts supply as Toyota seeks to tap its smaller rival's expertise in emerging Asian markets. A stake in Mazda may also prevent future incursions by tech companies, one analyst said. "For a technology company which lacks the expertise in making cars, Mazda could look like a very interesting acquisition. They're very good, they're not too expensive. Maybe Toyota realizes this," CLSA managing director Chris Richter said. "By buying a 5 percent stake, Toyota takes Mazda off the table rather than having it sit out there like a free agent which could someday be used against them." COROLLA PRODUCTION SHIFT Mazda stands to gain from a deal that gives the small automaker a production foothold in the United States.
Toyota issues stop sale on 6 key models over seat fabrics; recall possible? [UPDATE]
Thu, 30 Jan 2014Toyota has issued a stop-sale order on six of its core models due to concerns about the flammability of certain seat fabrics. The issue rests not with the cloth and leather covers themselves, but with a piece of seat heater beneath them that fails to meet US Federal Motor Vehicle Safety Standards for flame retardancy.
There have been no reports of fires or injuries from the affected cars, which include some of Toyota's biggest volume sellers. 2013 and 2014 Camry, Camry Hybrid, Avalon and Sienna models equipped with heated seats are included in the stop-sale, as are 2014 Tundra pickups and Corolla sedans. The exact number of vehicles with the non-compliant materials are still being tabulated, according to The Detroit Free Press.
According to a Toyota spokesman, the National Highway Traffic Safety Administration has been notified, although it remains to be seen if a recall will be issued. Outside of a full recall, though, it's unclear how Toyota will deal with vehicles equipped with the flammable materials that have already found homes.
Toyota claims hydrogen fuel cell breakthrough
Tue, May 19 2015Platinum isn't cheap. And it's a necessary component of hydrogen fuel-cell technology. Which means that Toyota's recent discovery of a way to better analyze how platinum breaks down is a bit of an H2 vehicle breakthrough. Toyota worked with the Japan Fine Ceramics Center (JFCC) to observe nanometer-sized platinum particles and, specifically, how they deteriorate. Platinum is used as a catalyst for when electrons are stripped away from the hydrogen molecule to create an electrical charge and when hydrogen ions and electrons mix with oxygen to create water vapor. So, when platinum gets more course during the countless chemical reactions inside of fuel cells, things slow down. Now that Toyota says it's figured out a better way to observe this process, greater efficiency and durability within the fuel-cell process of electricity production are likely to follow, though more chemistry study will be needed to figure out how that will work. Still, it's topical because Toyota last year started producing the world's first production hydrogen fuel-cell vehicle. The Japanese automaker debuted sales of the Mirai fuel-cell vehicle in Japan late last year and plans to start selling the car in California this fall (the car will be priced at $57,500). Toyota also plans to boost Mirai production to about 2,000 units in 2016 from about 700 this year. Take a look at Toyota's documents and video below. R&D Breakthrough Sets Stage for More Efficient, Durable Fuel Cell Stacks Toyota City, Japan, May 18, 2015—A breakthrough in the real-time observation of fuel cell catalyst degradation could lead to a new generation of more efficient and durable fuel cell stacks. Toyota Motor Corporation and Japan Fine Ceramics Center (JFCC) have developed a new observation technique that allows researchers to monitor the behavior of nanometer-sized particles of platinum during chemical reactions in fuel cells, so that the processes leading to reduced catalytic reactivity can be observed. Platinum is an essential catalyst for the electricity-producing chemical reactions occurring between oxygen and hydrogen in fuel cell stacks. Reduced reactivity is the result of "coarsening" of platinum nanoparticles—a process whereby the nanoparticles increase in size and decrease in surface area. Up until now, however, it has not been possible to observe the processes leading to coarsening, making it difficult to analyze the root causes.



















