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Ring crack propagation in silicon nitride under rolling contact

机译:滚动接触下氮化硅中环裂纹的扩展

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Silicon nitride has been found to have the optimum combination of properties which are suitable for rolling element bearing applications to withstand high loads, severe environments, and high speeds. Surface ring cracks are difficult to detect but are found on the surface of silicon nitride balls. These ring crack defects decrease the rolling contact fatigue life considerably. This paper presents an experimental study and numerical analysis of ring crack propagation in rolling contact. The contribution of this study is to provide understanding of ring crack propagation behaviour and life prediction in rolling contact. Rolling contact tests are performed on the silicon nitride/steel elements. Silicon nitride ball surfaces are examined before testing using a dye-penetrant technique and optical microscopy. The surfaces are examined using optical microscopy and scanning electron microscopy during testing and after failure. The numerical calculations are based on a 3D model of ring crack growth. The rolling contact loading is simulated by a repeated Hertzian surface load with normal pressure and tangential traction. Fracture mechanics analysis is utilised to determine the stress intensity along the crack front and the stress intensity factors are analysed using a 3D boundary element model. Life predictions from the present calculations are in line with the experimental observations.
机译:已发现氮化硅具有最佳的性能组合,适用于滚动轴承的应用,以承受高负载,恶劣环境和高速。表面环裂纹很难检测到,但发现在氮化硅球的表面上。这些环裂纹缺陷大大降低了滚动接触疲劳寿命。本文介绍了滚动接触中环裂纹扩展的实验研究和数值分析。这项研究的目的是提供对滚动接触中环裂纹扩展行为和寿命预测的理解。在氮化硅/钢元素上进行滚动接触测试。在测试之前,使用染料渗透技术和光学显微镜检查氮化硅球的表面。在测试过程中和失效后,使用光学显微镜和扫描电子显微镜检查表面。数值计算基于环裂纹扩展的3D模型。滚动接触载荷是通过具有正常压力和切向牵引力的重复赫兹表面载荷来模拟的。利用断裂力学分析确定沿裂纹前沿的应力强度,并使用3D边界元模型分析应力强度因子。根据当前计算得出的寿命预测与实验观察结果一致。

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