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Influence of residual stresses and mean load on the fatigue strength of case-hardened notched specimens

机译:残余应力和平均载荷对表面硬化缺口试样疲劳强度的影响

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摘要

Case-hardened gear wheels, e.g., in vehicle transmissions are cyclically most stressed components. Theirlifetime is determined by the interaction of loading, tooth flank load-capacity and tooth foot load-capacity. The latter is influenced by a multitude of parameters like mean loading or residual stress state appearing during operation. To evaluate the tooth-foot load-capacity, the knowledge of the mean stress and residual stress sensitivity of the fatigue strength of the material conditions at the sites critical for failure is necessary.rnThe examinations on hand concerning means stress sensitivity and residual stress sensitivity usually deal with homogeneous materials. Systematic analyses for case-hardened conditions are missing. In this work case-hardened notched specimens with different residual stress states are investigated under cyclic bending. The results are analyzed using a local concept and an additional fracture mechanical approach. With the local concept it was possible to determine the crack initiation site which was partly at the surface and partly below the surface. The fracture mechanical approach was necessary to understand the crack stop behavior and to determine the site critical for failure. An uniform description of the lifetime behavior of unpeened and shot peened specimen could be achieved using a modified Haigh diagram which takes into account the local stress state at the site critical for failure.
机译:循环硬化的齿轮,例如在车辆变速器中,是周期性受力最大的部件。它们的寿命取决于载荷,齿腹载荷能力和齿足载荷能力的相互作用。后者受操作期间出现的多个参数(例如平均负载或残余应力状态)的影响。为了评估牙足的负荷能力,需要了解关键部位的疲劳条件下材料疲劳强度的平均应力和残余应力敏感性。处理均质材料。缺少针对个案强化条件的系统分析。在这项工作中,研究了在循环弯曲下具有不同残余应力状态的淬硬缺口试样。使用局部概念和其他断裂力学方法对结果进行分析。利用局部概念,可以确定部分在表面且部分在表面之下的裂纹萌生部位。断裂力学方法对于了解裂纹的停止行为并确定失效的关键位置是必要的。可以使用修改后的Haigh图对未喷丸和喷丸处理的试样的寿命行为进行统一描述,该图考虑了失效关键部位的局部应力状态。

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