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Failure analysis of martensitic stainless steel bridge roller bearings

机译:马氏体不锈钢桥滚筒轴承的故障分析

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摘要

The paper is aimed at finding the likely failure mechanism of a bridge roller bearing made of high strength martensitic stainless steel. Spectroscopy and finite element stress analysis of the roller indicated that an initial radial surface crack, found at an end face of the roller and close to the contact region, was induced by stress corrosion cracking (SCC). The initial crack subsequently changed shape and increased in size under growth through fatigue and finally formed a quarter circle radial crack centred on the end face corner of the roller. Numerically computed stress intensity factors for the final crack showed that crack loading was predominantly in Mode II. For a crack size as observed on the fracture surface, the maximum service load, as specified by the manufacturer, enhanced by a certain roller bearing misalignment effect, was sufficient for failure through fracture.
机译:本文旨在找到由高强度马氏体不锈钢制成的桥滚子轴承的可能失效机理。 辊的光谱和有限元应力分析表明,通过应力腐蚀裂解(SCC)诱导在辊的端面处发现并靠近接触区域的初始径向表面裂纹。 初始裂缝随后通过疲劳而在生长下改变的形状并增加,并且最终形成以辊的端面角落的四分之一圆形径向裂缝。 最终裂纹的数值计算的应力强度因子显示,裂缝载荷主要是在模式II中。 对于在裂缝表面上观察到的裂缝尺寸,由制造商规定的最大服务负载,通过某些滚子轴承未对准效果增强,足以通过裂缝失效。

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