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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Study on design optimization of a crankshaft bearing considering crankshaft strength for an internal combustion engine
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Study on design optimization of a crankshaft bearing considering crankshaft strength for an internal combustion engine

机译:考虑内燃机曲轴强度的曲轴轴承设计优化研究

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摘要

The effect on a crankshaft was not generally considered in the current optimum design of a crankshaft bearing for an internal combustion engine, but the corresponding relation between the dimensions of a crankshaft bearing and those of a crankshaft journal exists. In this article, the crankshaft-bearing system of a four-stroke, four-cylinder internal combustion engine was taken as the research object, and the optimum design of crankshaft bearings considering crankshaft strength was carried out. The necessity of considering crankshaft strength in the optimum design of the crankshaft bearings was studied. Crankshaft strength was taken as one of the constraints in establishing the model of optimum design of the crankshaft bearings. The particle swarm algorithm was used to optimize crankshaft bearings. The results show that, compared with the design of bearings for the original engine, the calculated 14.21 per cent of the total average frictional power loss of the bearings can be reduced by the optimum design of crankshaft bearings on the condition that crankshaft strength is not exceeded. If the effect on a crankshaft is not considered in the optimum design of crankshaft bearings, although obviously the total average frictional power loss of the bearings is reduced, crankshaft strength cannot meet design demand. Therefore, a reasonable optimum design of crankshaft bearings should consider the whole crankshaft-bearing system and the effect on crankshaft strength.
机译:当前用于内燃机的曲轴轴承的最佳设计中通常没有考虑对曲轴的影响,但是存在曲轴轴承的尺寸与曲轴轴颈的尺寸之间的对应关系。本文以四冲程四缸内燃机的曲轴轴承系统为研究对象,并根据曲轴强度对曲轴轴承进行了优化设计。研究了在曲轴轴承的优化设计中考虑曲轴强度的必要性。曲轴强度被视为建立曲轴轴承最佳设计模型的约束之一。粒子群算法用于优化曲轴轴承。结果表明,与原始发动机的轴承设计相比,在不超过曲轴强度的情况下,通过优化设计的曲轴轴承可以减少计算出的轴承平均总摩擦功率损耗的14.21%。 。如果在曲轴轴承的最佳设计中未考虑对曲轴的影响,尽管显然会降低轴承的总平均摩擦功率损耗,但曲轴强度无法满足设计要求。因此,合理的曲轴轴承优化设计应考虑整个曲轴轴承系统及其对曲轴强度的影响。

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