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首页> 外文期刊>MATEC Web of Conferences >Comparison of Hertzian and JKR theories with a finite element model in boundary lubrication conditions between a compression ring and a cylinder
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Comparison of Hertzian and JKR theories with a finite element model in boundary lubrication conditions between a compression ring and a cylinder

机译:压缩环与气缸边界润滑条件下Hertzian和JKR理论与有限元模型的比较

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This study focuses on the creation of an isothermal elastic model to highlight, through stresses, the occurrence of plastic deformation in certain crank angles under extreme dry conditions inside an internal combustion engine. The stresses that are exported from this analysis are pointing out not only the necessity for an elastoplastic model to be created, but also the importance of predicting the correct friction coefficient, as pointed out by both the contact surface stress and those in depth of the two bodies in contact. A comparison between two coefficients of frictions and one frictionless case is conducted. The comparison between the finite element model and the adhesion mathematical model of Johnson, Kendall and Roberts (JKR), seals the importance of the interaction forces, acting on the common solid surface, in the pursuit of defining a propriate contact patch. Furthermore, a three-dimensional model is proposed for further investigation, highlighting the importance of modelling surface’s micro asperities for a solid stress analysis.
机译:这项研究的重点是建立等温弹性模型,以通过应力突出内燃机内部极端干燥条件下某些曲柄角处塑性变形的发生。从该分析中导出的应力不仅指出了创建弹塑性模型的必要性,而且还指出了预测正确的摩擦系数的重要性,正如接触表面应力和两者的深度所指出的那样。身体接触。比较了两种摩擦系数和一种无摩擦情况。约翰逊,肯德尔和罗伯茨(JKR)的有限元模型与附着力数学模型之间的比较,说明了在定义适当的接触面时,作用在共同固体表面上的相互作用力的重要性。此外,提出了一个用于进一步研究的三维模型,突出了为固体应力分析建模表面的微观粗糙度的重要性。

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