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Effects of non-metallic inclusions on the crack propagation in bearing steel

机译:非金属夹杂物对轴承钢裂纹扩展的影响

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The crack propagation in bearing steel with a non-metallic inclusion is analyzed by Voronoi finite element method. The load applied on the Voronoi finite element model is obtained by combination of quasi-dynamic method and Hertzian contact theory. Von Mises stress distribution in the micro-domain is calculated to determine the crack initiation. The result shows that the non-metallic inclusion acts as stress raiser and the maximum von Mises stress appears near the inclusion. Thus, we can conclude that the crack is initiated near the inclusion. Stress intensity factors (SIFs) were calculated to study the crack propagation as a function of inclusion elastic modulus, size, and depth. The crack is more likely to grow when the inclusion is soft, small and shallow.
机译:用Voronoi有限元方法分析了非金属夹杂物在轴承钢中的裂纹扩展。准动力学方法和赫兹接触理论相结合,获得了Voronoi有限元模型上施加的载荷。计算微区中的冯·米塞斯应力分布,以确定裂纹萌生。结果表明,非金属夹杂物起应力的作用,并且最大的von Mises应力出现在夹杂物附近。因此,我们可以得出结论,裂纹是在夹杂物附近开始的。计算应力强度因子(SIF),以研究裂纹扩展与夹杂物弹性模量,尺寸和深度的关系。当夹杂物柔软,细小和浅时,裂纹更有可能生长。

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