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Computational service life estimation of contacting mechanical elements in regard to pitting

机译:关于点蚀的接触式机械元件的计算使用寿命估算

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摘要

A computational model for determining the service life of contacting surfaces in regard to surface pitting is presented. The model considers the material fatigue process leading to pitting, i.e. the conditions required for the short fatigue crack propagation originating from the initial crack in a single material grain. In view of small crack lengths observed in surface pitting, the simulation takes into account the short crack growth theory. The stress field in the contact area and the required functional relationship between the stress intensity factor and the crack length are determined by the finite element method. An equivalent model of two contacting cylinders is used for numerical simulations of crack propagation in the contact area. On the basis of numerical results, and with consideration of some particular material parameters, the probable service life period of contacting surfaces is estimated for surface curvatures and loadings that are most commonly encountered in engineering practice.
机译:提出了一种计算模型,用于确定与表面点蚀有关的接触表面的使用寿命。该模型考虑了导致点蚀的材料疲劳过程,即,由于单一材料晶粒中的初始裂纹而导致的短疲劳裂纹扩展所需的条件。考虑到在表面点蚀中观察到的小裂纹长度,该模拟考虑了短裂纹扩展理论。接触区域中的应力场以及应力强度因子和裂纹长度之间所需的函数关系通过有限元方法确定。两个接触圆柱体的等效模型用于接触区域中裂纹扩展的数值模拟。根据数值结果,并考虑某些特定的材料参数,针对工程实践中最常见的表面曲率和载荷,估算了接触表面的可能使用寿命。

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