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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Predicting the wear coefficient and friction coefficient in dry point contact using continuum damage mechanics
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Predicting the wear coefficient and friction coefficient in dry point contact using continuum damage mechanics

机译:使用连续损伤力学预测干燥点接触中的磨损系数和摩擦系数

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摘要

Wear coefficient and friction coefficient are two of the key parameters in the performance of any tribo-system. The main purpose of the present research is to use continuum damage mechanics to predict wear coefficient. Thus, a contact model is utilized that can be used to obtain the friction coefficient between the contacting surfaces. By applying this model to the continuum damage mechanics model, the wear coefficient between dry surfaces is predicted. One of the advantages of using this model is that the wear coefficient can be numerically predicted unlike other methods which highly rely on experimental data. In order to verify the results predicted by this model, tests were performed using pin-on-disk test rig for several ST37 samples. The results indicated that the wear coefficient increases with increasing the friction coefficient.
机译:磨损系数和摩擦系数是任何摩擦系统的性能的两个关键参数。 本研究的主要目的是使用连续损伤力学来预测磨损系数。 因此,利用接触型号可用于获得接触表面之间的摩擦系数。 通过将该模型应用于连续体损伤力学模型,预测干燥表面之间的磨损系数。 使用该模型的一个优点是,与高度依赖于实验数据的其他方法,可以数值预测磨损系数。 为了验证该模型预测的结果,使用针对磁盘测试钻机进行测试的测试,用于几个ST37样本。 结果表明,随着摩擦系数的增加,磨损系数增加。

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