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The engines with 2.5 L (2,490 cc) displacement, identified as the Volvo Penta AQ151 (8 valve) and AQ171 (dohc 16 valve) models, got a forged crankshaft with a longer stroke of 86 mm (3.39 in) together with pistons with a 3 mm (0.12 in) lower compression height. The 2.5 L (2,490 cc) blocks still had B230 cast in the block.
Volvo Penta is a Swedish marine and industrial engine manufacturer, a joint stock company within the Volvo Group. Volvo Penta evolved from a foundry in Skövde 1907, when the first marine engine, the B1, was manufactured. The name Penta was created about 1916. [2] The Penta company soon became an established internal combustion engine ...
Volvo Cars has a long reputation as a maker of inline (or straight) engines. This list of Volvo engines gives an overview of available internal combustion engines. When Volvo started in 1927, they ordered their engines from the engine manufacturer Penta in Skövde. The first engine was the inline four-cylinder side valve 28 hp (21 kW) Type DA ...
The B30A was used in the Marcos GT from 1969 to 1972 [6] and the Volvo C303 from 1974 to 1984. The B30 from the 164 was also used in the 1970 Volvo GTZ 3000 concept car. Marine application versions of the B30 were sold by Volvo's Penta division. These engines carried designations AQ 165A and AQ 170A, B, or C.
Volvo B23 engine; Volvo B30 engine; Volvo B36 engine; ... Penta DB; V6 PRV engine; PSA EW/DW engine; R. Renault F-Type engine; S. Volvo SI6 engine; V. Volvo V8 engine;
U.S. regulators are warning airlines to limit the use of an anti-icing system on Boeing 737 Max jets in dry air to avoid overheating engine-housing parts, which could cause them to break away from ...
The B36 was discontinued in 1973, although it was no longer used in trucks after 1966. It was the last petrol truck engine built by Volvo and the only V8 engine used in any vehicle, except for the newer Yamaha-built units used in the Volvo XC90 and S80. A marine version, the Volvo Penta AQ180, was available, featuring 180 hp with twin carburetors.
Engine cooling removes energy fast enough to keep temperatures low so the engine can survive. [2] Some high-efficiency engines run without explicit cooling and with only incidental heat loss, a design called adiabatic. Such engines can achieve high efficiency but compromise power output, duty cycle, engine weight, durability, and emissions.
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