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The Ford Vulcan is a 3.0 L V6 engine designed and built by the Ford Motor Company.It debuted in 1986 in the newly launched Ford Taurus.Ford went on to install the Vulcan V6 in a variety of car, van, and pickup truck models until the 2008 model year, after which production stopped.
The Mitsubishi 6B3 engine is a range of all-alloy piston V6 engines developed by Mitsubishi Motors. Currently, only one engine has been developed, a 3.0 L (2,998 cc) V6 first introduced in the North American version of the second generation Mitsubishi Outlander which debuted in October 2006.
The SHO engines share a common bell housing pattern with the following Ford engines: the 2.3/2.5 L FWD HSC I4, the 3.0 L FWD/RWD Vulcan V6, and the 3.8 L FWD Canadian Essex V6. [8] In 1996, Ford discontinued the SHO V6 and began fitting the Taurus SHOs with the SHO 3.4 L V8 and the Ford AX4N automatic transmission .
2000–present Power Stroke 3.0 [3] —3.0 L Diesel , Used in Ford Ranger (Argentina) 2009–present EcoBoost —1.6 L/2.0 L Ford Sigma 1.6 L and L 2.0 L -engine with Direct Injection Spark Ignition
The original 3.3 engine, as well as the larger 3.8, are pushrod engine designs. The 3.3 was introduced in 1989 with the 1990 Chrysler Imperial, New Yorker, and related K-series models, and was joined in 1991 by the 3.8. Production on the 3.3 was stopped in 2010 after a run of 5,076,603 [2] engines, while the 3.8 remained in production until May ...
Holden has built its own 3.2 L (3,195 cc) version of the High Feature engine in Australia produced between 2005 and 2010 with a bore and stroke of 89 mm × 85.6 mm (3.50 in × 3.37 in). Branded with the Alloytec name like the 3.6L version, this version produces 227 hp (169 kW; 230 PS) at 6600 rpm and 297 N⋅m (219 lb⋅ft) at 3200 rpm.
The HB was the first engine Cosworth designed specifically for the 3.5 liter Formula One. Geoff Goddard and John Hancock were responsible for its development. Unlike the DFR, Brian Hart was not involved in the design. The development of the HB took place in close cooperation with Benetton's technical director at the time, Rory Byrne.
Toyota sought to enhance the drivability pattern of the engine (over the 3VZ) at exactly 3000 rpm, since that was the typical engine speed for motors cruising on the highway. The result was less cylinder distortion coupled with the decreased weight of rotating assemblies, smoother operation at that engine speed, and increased engine efficiency.