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Variable inertia effects of an engine including piston friction and a crank or gudgeon pin offset

机译:发动机的可变惯性效应,包括活塞摩擦力和曲柄或摇杆销偏移

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摘要

In order to obtain greater accuracy in simulation, more sophisticated models are often required. When it comes to the torsional vibration of reciprocating mechanisms the effect of inertia variation is very important. It has been shown that the inclusion of this variation increases model accuracy for both single-cylinder and multi-cylinder engine torsional vibration predictions. Recent work by the present authors has revealed that piston-to-cylinder friction may modify an engine's 'apparent' inertia function. Kinematic analysis also shows that the piston side force and the dynamic piston-to-cylinder friction are interdependent. This has implications for engine vibration modelling. Most modern engines employ a gudgeon pin offset, and there is a growing interest in pursuing large crank offsets; hence, the effect of these on inertia variation is also of interest. This paper presents the derivation of the inertia function for a single engine mechanism, including both piston-to-cylinder friction and crank or gudgeon pin offset, and investigates the effect of each through predictions. The effect of crank offset on the variable inertia function is also verified by experiment. [PUBLICATION ABSTRACT]
机译:为了获得更高的仿真精度,通常需要更复杂的模型。当涉及往复机构的扭转振动时,惯性变化的影响非常重要。已经表明,包括这种变化可以提高单缸和多缸发动机扭转振动预测的模型精度。作者的最新工作表明,活塞与气缸的摩擦可能会改变发动机的“表观”惯性功能。运动学分析还表明,活塞侧向力和动态的活塞-气缸摩擦是相互依赖的。这对发动机振动建模有影响。大多数现代发动机都采用了短柄销偏置,因此人们对追求大的曲柄偏置越来越感兴趣。因此,这些对惯性变化的影响也很有趣。本文介绍了单个发动机机构的惯性函数的推导,包括活塞与气缸的摩擦以及曲柄或摇杆销的偏移量,并通过预测研究了每种方法的效果。实验还验证了曲柄偏置对可变惯性函数的影响。 [出版物摘要]

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