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Ford developed a supercharged version of the 3.8 L Essex V6 that was used in two Ford MN12 platform cars beginning in the late 1980s. A belt driven Eaton M90 roots-type supercharger spinning at 2.6 times engine rpm, to a maximum of 15,000 rpm at the engine's 6000 rpm redline, provided up to 12 psi (0.83 bar) of boost. [ 7 ]
The 3.8 L V6 Essex engine in 1995 models was susceptible to head gasket failure, as it was in its Taurus and Sable stablemates. However, the Windstar's problem was a cast iron block with aluminum heads, coupled with higher loads than the Taurus, the van being 700 pounds heavier. In response, Ford extended the warranty on the head gasket to ...
The first Ford application of the 3.7 L was the 2009 Lincoln MKS. A few days before the 2009 Los Angeles International Auto Show, Ford unveiled a new version of the 3.7 L for the 2011 Mustang, making it the first Duratec-badged V6 since the Lincoln LS to be used in a production rear-wheel drive car. Due to packaging differences in transverse ...
The Ford Super High Output (SHO) V8 engine was designed and built by Ford Motor Company in conjunction with Yamaha Motor Corporation for use in the 1996 Ford Taurus SHO. It was based on the successful Ford Duratec engine rather than its predecessor, the compact Ford SHO V6 engine developed by Yamaha for the 1989 Taurus SHO. The engine was ...
The Ford Duratec V6, is an aluminum DOHC V6 engine with a 60° bank angle introduced in 1993 with the Ford Mondeo. The primary engineering came from Porsche , [ 1 ] who was developing this engine before selling the engineering to Ford, and Cosworth , who helped with cylinder head manufacturing. [ 2 ]
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.
The 2.5-litre V6 used a single barrel Ford carburetor which was also used in the low-compression variants of the 3.0-litre Essex V6 used in the Ford Transit. Unusually, the Essex V6 was designed so that the same block could serve in both diesel (compression ignition) and petrol applications, although the diesel version never reached production.
If this is done without addressing the underlying issue, the head gaskets may fail again bringing along a cracked or warped cylinder head. In contrast, the 7.3 and 6.7 have six head bolts per cylinder while the 6.0, 6.4/VT365, and IDI 7.3 only have four.
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