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The firing order has been changed from that shared by all previous Modular V8s (1-3-7-2-6-5-4-8) to that of the Ford Flathead V8 (1-5-4-8-6-3-7-2). [17] Compression ratio is 11.0:1, and despite having port fuel injection (as opposed to direct injection ) the engine can still be run on 87 octane gasoline.
The new V8s were marketed under the "Triton" name and mark the first use of Ford's Modular single overhead cam (SOHC) engines in the F-Series pickups. Ford's own 8.8 independent front suspension replaced the Dana 44 Twin-I-Beam front end, while the Ford 8.8 rear axle remained standard.
Named for the 1962 Ford Taunus V4 engine and Ford Cologne V6 engine built in Cologne, Germany.. 1.2/1.3/1.5/1.7L were mostly in European Cars. 1.8, 2.0/2.3 had the same bellhousings bolt patterns with differences from year to year to be wary of.
2012–present; The 3.2 is an I5 engine used in the Ford Transit, the Ford Ranger, Ford Everest, Mazda BT-50 and the Vivarail. For the North American-spec Transit, * the 3.2 L Duratorq is modified to meet American and Canadian emissions standards and is branded as a Power Stroke engine.
At its launch, the standard engine in the Super Duty was the 5.4L Triton V8. Producing 255 hp (190 kW; 259 PS) and 350 lb⋅ft (475 N⋅m) of torque, the SOHC 16-valve V8 was shared with the F-150 and Ford E-Series. During 1999, the engine was retuned to 260 horsepower (194 kW; 264 PS).
Initially, the 4.6 L Triton engine and the new 3-valve 5.4 L three-valve-per-cylinder Triton V8 engines, respectively mated to a 4R70E and 4R75E four-speed automatic transmission, were the only two powertrain combinations available to the retail public on the new trucks.
The 351W had larger main bearing caps, thicker and longer connecting rods, and a distinct firing order (1-3-7-2-6-5-4-8 versus the usual 1-5-4-2-6-3-7-8, a means to move the unacceptable "noise" of the consecutively-firing adjacent front cylinders to the sturdier rear part of the engine block all while reducing excessive main bearing load ...
The new engine control software makes the engine capable of 400 hp (298 kW) at 2,800 rpm and 800 lb⋅ft (1,085 N⋅m) at 1,600 rpm while achieving better fuel economy and without any physical changes to the engine. [18] The 2015 engines are rated at 440 hp (328 kW) and 860 lb⋅ft (1,166 N⋅m). [19]