首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >ELASTOHYDRODYNAMIC ANALYSIS OF THE CONROD SMALL-END OF A HIGH PERFORMANCE MOTORBIKE ENGINE VIA A MASS CONSERVING CAVITATION ALGORITHM
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ELASTOHYDRODYNAMIC ANALYSIS OF THE CONROD SMALL-END OF A HIGH PERFORMANCE MOTORBIKE ENGINE VIA A MASS CONSERVING CAVITATION ALGORITHM

机译:通过质量保守空化算法弹性流体动力学分析高性能摩托车发动机的Conrod小端

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In this contribution a complementarity formulation for the solution of EHL problem in presence of cavitation is employed in order to investigate the tribological behavior of the conrod small-end of a high performance motorbike engine. The influence of different physical and geometrical parameters is discussed. In particular, the clearance between the conrod small-end and the piston pin, the lubricant physical properties, the surface roughness and the stiffness of the piston pin are investigated, thus providing preliminary guidelines for the correct design of the coupling. Due to the negligible influence of the transversal forces acting on the conrod small-end and of the relative sliding speed between the mating surfaces, a two symmetrical model of the assembly is prepared and results are compared with those obtained adopting a simply symmetrical model.
机译:在该贡献中,采用用于在空化存在下解决EHL问题的互补性制剂,以研究高性能摩托车发动机的Conrod小端的摩擦学行为。讨论了不同物理和几何参数的影响。特别地,研究了Conrod小端和活塞销之间的间隙,润滑剂物理性质,表面粗糙度和活塞销的刚度,从而为耦合的正确设计提供初步准则。由于作用于Conrod的小端和配合表面之间的相对滑动速度的横向力的影响可忽略不计,因此制备了两个组件的对称模型,并将结果与​​采用简单对称模型进行了比较。

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