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Spur Gear Crack Propagation Path Analysis Using Finite Element Method

机译:采用有限元法进行正齿轮裂纹传播路径分析

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摘要

An effective gear design balances strength, durability, reliability, size, weight and cost. However unexpected gear failure may occur even with adequate gear tooth design. Failure of the engineering structures is caused by crack, which depends on the design and operating conditions and can be avoided by analyzing and understanding the manner it originates. To develop design guidelines to prevent failure modes considering gear tooth fracture, by studying the crack propagation path in a spur gear. Crack propagation paths are predicted for a variety of gear tooth geometry at various crack initiation location. The effects of gear tooth thickness, pitch radius, and tooth pressure angle are considered. Analysis is being carried out using FEM with the principles of linear elastic fracture mechanics and mixed mode fracture criteria. The stress intensity factors are the key parameters to estimate the characteristics of a crack. Design charts & Design guidelines or fracture mechanics will be formed considering the effects or gear geometry, applied load, crack size and material property.
机译:有效的齿轮设计平衡强度,耐用性,可靠性,尺寸,重量和成本。然而,即使具有足够的齿轮齿设计,也可能发生意外的齿轮故障。工程结构的失效是由裂缝引起的,这取决于设计和操作条件,可以通过分析和理解它起源的方式来避免。开发设计指南,以防止考虑齿轮齿骨折的故障模式,通过研究正常齿轮中的裂缝传播路径。在各种裂纹启动位置处的各种齿轮齿几何形状预测裂缝繁殖路径。考虑齿轮齿厚度,间距和齿压角度的影响。使用FEM进行分析,具有线性弹性断裂力学和混合模式骨折标准的原理。压力强度因素是估计裂缝特征的关键参数。考虑到效果或齿轮几何,施加负荷,裂缝尺寸和材料性能,将形成设计图表和设计指南或骨折力学。

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