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

2005 Mazda Tribute I 5-speed Roof Rack Alloy Wheels 82k Texas Direct Auto on 2040-cars

US $8,980.00
Year:2005 Mileage:82830 Color: Gold /
 Gray
Location:

Stafford, Texas, United States

Stafford, Texas, United States
Advertising:
Vehicle Title:Clear
For Sale By:Dealer
Engine:2.3L 140Cu. In. l4 GAS DOHC Naturally Aspirated
Body Type:Sport Utility
Transmission:Manual
Fuel Type:GAS
Condition:
Used: A vehicle is considered used if it has been registered and issued a title. Used vehicles have had at least one previous owner. The condition of the exterior, interior and engine can vary depending on the vehicle's history. See the seller's listing for full details and description of any imperfections. ...
VIN (Vehicle Identification Number)
: 4F2YZ02Z15KM64270
Year: 2005
Warranty: Vehicle does NOT have an existing warranty
Make: Mazda
Model: Tribute
Power Options: Power Windows, Power Locks
Trim: i Sport Utility 4-Door
Number Of Doors: 4
Drive Type: FWD
CALL NOW: 832-947-9940
Mileage: 82,830
Inspection: Vehicle has been inspected
Sub Model: WE FINANCE!!
Seller Rating: 5 STAR *****
Exterior Color: Gold
Interior Color: Gray
Number of Cylinders: 4

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Auto blog

Next Mazda CX-9 to launch by 2016, could get turbo-four

Thu, 01 May 2014

Mazda has a lot going on these days, what with launching the new Mazda6 and Mazda3, with the new Mazda2 just around the corner. We know the new Miata is also on the way, and after that it looks like the next vehicle in its lineup due for an overhaul is the CX-9 crossover, due to launch by 2016. The move makes sense because the CUV is growing long in the tooth. It was first introduced in 2007 and was refreshed twice since then.
The next-generation CX-9 will move away from Ford-derived components like the V6 in the current model and will likely use a turbocharged four-cylinder engine. However, a final decision hasn't been made yet. "If I ask Mr. Hitomi, our top guy of powertrains at Mazda, he believes the downsizing turbo solution costs more. But real downsizing means six-cylinder to four-cylinder turbo could make sense from a cost point of view," said Mazda's global marketing boss Masahiro Moro to CarAdvice at the New York Auto Show. The executive said a hybrid powertrain option would be unlikely, but markets outside the US could get a diesel, as well.
Moro also tipped his hand at future Mazda model plans. He hints that the Japanese automaker is considering building a luxury vehicle with a six-cylinder engine. "It's too early, we don't have a car yet. But we are collecting advice as to V6 or straight-six," he said to CarAdvice. We'll definitely be watching.

Aussie Mazda MX-5 Miata specs leak suggests power loss

Fri, 12 Sep 2014

Mazda's 2016 MX-5 Miata reveal didn't include much in the way of specifications, but the car's debut seems to have blown the lid off of the rumormill, with the latest word out of Australia including fresh claims of curb weight and engine output.
Before delving into the findings from Motoring.com, we're going to take a moment to find a few grains of salt. It's not that we don't trust the Oz publication, it's just that we wouldn't be surprised to learn their car's specifications will vary from that of our eventual North American car.
Of course, we don't expect the footprint of the new ND model to itself to differ much - it will still be the most compact Miata ever - overall length is expected to check in at just over 154 inches - that's about 1.4 inches shorter than the original NA Miata and over 4 inches shorter than today's NC generation, yet it'll ride atop a longer wheelbase and be slightly wider while sitting lower to the ground.

How Mazda got Skyactiv-X to work is incredible

Thu, Jan 25 2018

"Take everything you know about engines and turn it around," Mazda North America Vehicle Development Engineer Dave Coleman says, patiently and with a look of benevolent pity, as he's quizzed about the particulars of the company's new engine. The Skyactiv-X engine is enigmatic — and deceptively simple in operation. And the bottom line for American consumers is that they'll be able to buy a car (or crossover; we don't know yet what vehicle will first get it) by late 2019 that provides diesel-like fuel economy but runs on regular old gasoline. In between diesel and spark ignition, but it's neither To truly understand it, you have to dive into the contradictions. Take that regular old gasoline: Contrary to common sense, the lower the octane, the better it works. In the lab, the Skyactiv-X engine loves 80 octane. The lowest Americans get is 87, so the engine is tuned for that octane. Go higher and you lose some low-end torque. Coleman was right. It's hard to wrap your head around an engine that thrives just at the point when most gas engines would aggressively self-destruct. It uses a supercharger to pump additional air — but not additional fuel. It uses spark plugs to start a combustion cycle that normally doesn't need a spark. And, quixotically, it's not displacing Mazda's own American-market diesel engine, currently languishing in a seemingly endless hell of regulatory approval. More bizarre: Mazda is a tiny automaker facing real existential headwinds, and gasoline compression ignition is a massive challenge. GM and Hyundai announced compression ignition, or HCCI, projects (full name, homogeneous charge compression ignition) to great fanfare, but they never amounted to a production hill of beans, crippled by reliability issues or horrible vibrations. Worse, they only worked at an unusably narrow range — low RPMs and low loads. HCCI research improved direct-injection gas and diesel engine technologies for these companies, but HCCI itself remains untamed. The benefits of lean combustion Why even try to tame HCCI? The answer is much better fuel economy and lower emissions. Less burned carbon-based fuel, less carbon dioxide released. That's simple. But there are some thermodynamic reasons for the lean combustion you can achieve with compression ignition that are worth explaining. The ideal amount of fuel for a conventional engine to burn is about a 14:1 air-to-fuel ratio. That lets every molecule burn nicely, in theory.