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Lightweight engine design strategies

机译:轻型发动机设计策略

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During the past years advances in fuel efficiency of car engines did not result in the expected reduction in overall fuel consumption of new car generations. One reason is the increasing vehicle weight. In an overall-weight analysis of an automobile the engine and as part of it, the crankcase represents a single component with a high weight reduction potential. This paper discusses weight reduction strategies using lightweight materials and modern design approaches. The application of lightweight materials for new crankcase concepts implies comprehensive design considerations to achieve weight reductions as close as possible to the potential of the selected material. A specific approach for inline and V-engine crankcase concepts is discussed in detail. Engine weight reduction can also be achieved through substituting large and therefore heavy engines with small high performance engines. Modern technologies applied to existing engine concepts increase the power-weight ratio, the engine's capability and therefore its marketing value. New lightweight design strategies allow a significant reduction of engine mass compared to conventional concepts and represent an important contribution to reduce the overall vehicle weight.
机译:在过去几年中,汽车发动机的燃油效率的进步不会导致新车的整体燃料消耗的预期降低。一个原因是车辆重量增加。在汽车发动机的总体重量分析中,作为其一部分,曲轴箱表示具有高重量潜力的单个组分。本文讨论了使用轻质材料和现代设计方法的减重策略。用于新的曲轴箱概念的轻质材料的应用意味着综合设计考虑,以实现尽可能接近所选材料的潜力的重量减少。详细讨论了内联和V-Engine曲轴箱概念的具体方法。还可以通过用大型高性能发动机代替大型和因此的重型发动机来实现发动机重量。应用于现有发动机概念的现代技术会增加功率重量,发动机的能力,从而提高其营销价值。与传统概念相比,新的轻量级设计策略允许发动机质量显着降低,并代表了减少整体车辆重量的重要贡献。

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