首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Evaluation of variable mass moment of inertia of the piston-crank mechanism of an internal combustion engine
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Evaluation of variable mass moment of inertia of the piston-crank mechanism of an internal combustion engine

机译:内燃机活塞曲柄机构的质量惯性矩的评估

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摘要

The current paper presents an original method for evaluating the variable mass moment of inertia of the piston-crank mechanism of an internal combustion engine based on the principle of kinetic energy equality of the real mechanism and its reduced model. The method has been developed to evaluate the Variable mass moment of inertia of a 12-cylinder V-engine having a piston-crank mechanism with main and auxiliary connecting rods. In order to study the influence of the piston-crank mechanism configuration on mass moment of inertia variability, the procedure has been also applied on virtual 'shortened' variants: 2-cylinder and 6-cylinder V-engines with main and auxiliary connecting rods, and a 6-cylinder in-line engine with simple piston-crank mechanism. The results are compared with values obtained using the usual simple method for determining the approximate constant mass moment of inertia based on Huygens-Steiner theorem. It is shown that there is negligible difference between the constant value obtained by the simple method and the mean value of variable mass moment of inertia evaluated using the proposed model. Variability of mass moment of inertia is relatively small for a large number of cylinders, but it rises with cylinder number reduction. The presented method with appropriate modifications may be applied to any piston-crank mechanism arrangement.
机译:本文基于真实机构的动能均等原理及其简化模型,提出了一种评估内燃机活塞-曲柄机构的质量惯性矩的新颖方法。已经开发出该方法来评估具有活塞曲柄机构以及主连杆和副连杆的12缸V型发动机的可变质量惯性矩。为了研究活塞-曲柄机构配置对质量惯性矩可变性的影响,该程序还应用于虚拟的“缩短的”变体:带有主连杆和辅助连杆的2缸和6缸V型发动机,以及带有简单活塞曲柄机构的六缸直列发动机。将结果与使用普通简单方法根据惠更斯-施泰纳定理确定近似恒定质量惯性矩所获得的值进行比较。结果表明,通过简单方法获得的常数值与使用该模型评估的质量惯性矩的平均值之间的差异可以忽略不计。对于许多气缸,质量转动惯量的变异性相对较小,但随着气缸数的减少,其增加。具有适当修改的所提出的方法可以应用于任何活塞-曲柄机构布置。

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