材料科学
裂缝闭合
复合材料
残余应力
氮化硅
裂纹扩展阻力曲线
接触力学
断裂力学
结构工程
有限元法
图层(电子)
工程类
作者
Katsuyuki Kida,Tatsuhiro Urakami,Takuto YAMAZAKI,Kazuhisa Kitamura
标识
DOI:10.1111/j.1460-2695.2004.00786.x
摘要
ABSTRACT Surface crack growth of silicone nitride ceramic bearings under rolling contact fatigue has been investigated from the viewpoints of contact stresses (ring crack model) and fluid pressure (wedge effect model). The mechanisms of these two models have been investigated independently; however, it was impossible to separate the effects of contact stresses and fluid pressure on surface crack growth. In this paper the effects of contact stresses (ring crack model) on surface crack growth are investigated. In the ring crack model the crack growth is caused by contact stresses around the circumference of the contact circle. The growth of surface cracks located inside and outside the contact track was observed in order to obtain data from which we could reexamine the ring crack model. The outside cracks under rolling contact fatigue were propagated by contact stresses alone and also the inside cracks grew as slowly as the outside cracks. We concluded that the cracks are propagated by the single effect of contact stresses. Preliminary observations of surface crack growth showed that the cracks were unaffected by wear and residual stresses.
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