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Consideration of moving tooth load in gear crack propagation predictions

机译:齿轮裂纹传播预测中移动齿载的考虑

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Robust gear designs consider not only crack initiation, but crack propagation trajectories for a fail-safe design. In actual gear operation, the magnitude as well as the position of the force changes as the gear rotates through the mesh. A study to determine the effect of moving gear tooth load on crack propagation predictions was performed. Two-dimensional analysis of an involute spur gear and three-dimensional analysis of a spiral-bevel pinion gear using the finite element method and boundary element method were studied and compared to experiments. A modified theory for predicting gear crack propagation paths based on the criteria of Erdogan and Sih was investigated. Crack simulation based on calculated stress intensity factors and mixed mode crack angle prediction techniques using a simple static analysis in which the tooth load was located at the highest point of single tooth contact was validated. For three-dimensional analysis, however, the analysis was valid only as long as the crack did not approach the contact region on the tooth.
机译:坚固的齿轮设计不仅考虑破裂启动,而且考虑裂纹传播轨迹,用于故障安全设计。在实际齿轮操作中,随着齿轮通过网格旋转,力的幅度以及力的位置变化。执行用于确定移动齿轮齿轮件对裂缝传播预测的影响的研究。研究了使用有限元法和边界元法的渐开线正齿轮的二维分析和螺旋锥小齿轮的三维分析,并与实验相比。研究了一种基于埃尔多安和SIH标准预测齿轮裂纹传播路径的修改理论。验证了基于计算应力强度因子和混合模式裂纹角预测技术的裂纹模拟,使用简单的静态分析,其中齿载位于单齿触点的最高点处。然而,对于三维分析,只要裂缝没有接近牙齿上的接触区域即可,分析仅是有效的。

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