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Gear Crack Propagation Path Studies: Guidelines for Ultra-Safe Design

机译:齿轮裂纹传播路径研究:超安全设计准则

摘要

Design guidelines have been established to prevent catastrophic rim fracture failure modes when considering gear tooth bending fatigue. Analysis was performed using the finite element method with principles of linear elastic fracture mechanics. Crack propagation paths were predicted for a variety of gear tooth and rim configurations. The effects of rim and web thicknesses, initial crack locations, and gear tooth geometry factors such as diametral pitch, number of teeth, pitch radius, and tooth pressure angle were considered. Design maps of tooth/rim fracture modes including effects of gear geometry, applied load, crack size, and material properties were developed. The occurrence of rim fractures significantly increased as the backup ratio (rim thickness divided by tooth height) decreased. The occurrence of rim fractures also increased as the initial crack location was moved down the root of the tooth. Increased rim and web compliance increased the occurrence of rim fractures. For gears with constant pitch radii, coarser-pitch teeth increased the occurrence of tooth fractures over rim fractures. Also, 25 deg pressure angle teeth had an increased occurrence of tooth fractures over rim fractures when compared to 20 deg pressure angle teeth. For gears with constant number of teeth or gears with constant diametral pitch, varying size had little or no effect on crack propagation paths.
机译:已经建立了设计指南,以防止在考虑轮齿弯曲疲劳时出现灾难性的轮辋断裂失效模式。使用具有线性弹性断裂力学原理的有限元方法进行分析。预测了各种齿轮齿和轮辋构造的裂纹扩展路径。考虑了轮辋和腹板厚度,初始裂纹位置以及齿轮齿几何形状因素(例如直径节距,齿数,节距半径和齿压力角)的影响。设计了齿/轮缘断裂模式的设计图,包括齿轮几何形状,施加的载荷,裂纹尺寸和材料性能的影响。随着备用比(轮辋厚度除以齿高)的降低,轮辋断裂的发生率显着增加。随着最初的裂纹位置沿着牙齿的根部向下移动,轮缘断裂的发生也增加了。轮辋和腹板柔度的增加增加了轮辋断裂的发生。对于具有恒定螺距半径的齿轮,较粗齿的齿比轮辋断裂增加了齿断裂的发生。同样,与20度压力角齿相比,25度压力角齿与轮辋骨折的发生率更高。对于齿数恒定的齿轮或直径节距恒定的齿轮,尺寸变化对裂纹扩展路径影响很小或没有影响。

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    Lewicki David G.;

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  • 年度 2001
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