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Auto blog
2018 Mazda CX-5 spied testing in Southern California
Tue, Aug 9 2016It appears the replacement for the Mazda CX-5 is on its way. The current model, though a few years old at this point, is still one of our favorite crossovers on the market. Its combination of handsome styling, practicality, and a genuine fun-to-drive nature make it a winner in our hearts. Hopefully this new model doesn't stray too far from that winning recipe. At least on the outside, that seems to be the case. The spy photos reveal Mazda's Kodo design language in full bloom. The general shape is the same as the current model, but the curves are a little tighter and appear similar to the new CX-9 and Chinese-only CX-4. The grille loses the horizontal bars for a deep-set mesh pattern, while the whole fascia appears to be more upright. The headlights and taillights look to be slimmer and slightly re-sculpted versions of the current shape. Other details for the upcoming CX-5 are scarce. The crossover is expected to debut next year as a 2018 model. It's unknown what engines or transmissions will be available, though the current powertrains are likely to carry over. There's also the rumor of a Mazda diesel making its way over, but, as always, it seems like a long shot. Related Video:
Finalists for 2014 Green Car of the Year announced
Thu, 17 Oct 2013The list of finalists for the 2014 Green Car of the Year has been announced, and in a genuinely bizarre twist, there's only one hybrid and no electric vehicles among the five contestants, despite the arrival of cars like the BMW i3 and Tesla Model S. Taking the place of the EVs are a pair of diesels, repping a technology that last won a Green Car of the Year award in 2009, when the Audi A3 TDI took the title. No diesel was in the running for last year's award.
Naturally, both of the diesel finalists are fielded by the Germans - with BMW's 328d and Audi's A6 TDI getting the nod. In the case of the 3 Series, BMW installed a 2.0-liter, turbodiesel, capable of delivering 180 horsepower and 280 pound-feet of torque, while returning 45 miles per gallon on the highway. Audi and its larger, 3.0-liter, V6 turbodiesel produce quite a bit more grunt, with 240 hp and 428 lb-ft of grunt, but net a very impressive 38 mpg on the highway in the A6.
Finalists for this year's awards include two diesels, three gas-powered cars and a plug-in hybrid.
Mazda hard at work on Skyactiv 2 engine technology
Wed, 08 Jan 2014As Mazda continues the current rollout of its still-new Skyactiv technology, the automaker is already looking at improving its family of engines for even better fuel economy and emissions reductions. Automotive News reports that with stricter fuel economy and emissions regulations planned for 2020 and 2025 in Europe, Mazda will likely release engines with next-generation Skyactiv 2 technology by the end of this decade, and Skyactiv 3 units just five years later.
The latter is expected to focus on improved engine cooling and lessening energy losses, but the big news in AN's report is that the next-gen Skyactiv 2 engines will use Homogeneous Charge Compression Ignition, or HCCI. This type of ignition is very similar to how a diesel engine operates (with high compression and using the compression stroke for fuel combustion rather than spark plugs), a method said to provide a cleaner and more efficient fuel burn - to the tune of a 30-percent improvement in fuel economy compared to current Skyactiv engines. Other automakers, including Hyundai, have already announced they are developing HCCI powerplants with similar technology and characteristics, so Mazda likely won't be a lone wolf here.
Equipped with HCCI technology, Mazda figures to be able to compete with larger automakers in terms of fuel economy and emissions without resorting to hybrid powertrains, continuously variable transmissions or automatics relying on more forward gears (eight or more) for optimal efficiency. Some of the challenges of HCCI, according to AN, include the need for better engine cooling, risk of misfire at high and low rpm and uneven engine performance based on fuel properties.