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首页> 外文期刊>Chinese Journal of Mechanical Engineering >VOLUME DEFECT FATIGUE FAILURE OF CERAMIC BALLS UNDER ROLLING CONDITION
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VOLUME DEFECT FATIGUE FAILURE OF CERAMIC BALLS UNDER ROLLING CONDITION

机译:滚动条件下陶瓷球的体积缺陷疲劳破坏

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摘要

A newly developed pure rolling fatigue test rig with three contact points is used to test the rolling contact fatigue properties of silicon nitride ceramic balls. Ball surfaces are examined after failure with optical microscopy and scanning electron microscopy. The failure cause, fatigue phenomenon and mechanics are analyzed. The research shows that subsurface cracks play a dominant role in the formation of spalling failure. These cracks originated from volume defects of the material and propagate, to form elliptical fatigue spalls under the action of principal tensile stresses. The principal tensile stress increases with increasing contact load, causing spall formation and reduction of rolling contact life. The greater the principal tensile stress is, the more severe the peeling of near surface is. Under the same condition, the closer volume defects are to the surface, the more likely failure occurs, the shorter the rolling contact life is.
机译:使用新开发的具有三个接触点的纯滚动疲劳试验机来测试氮化硅陶瓷球的滚动接触疲劳性能。失效后,用光学显微镜和扫描电子显微镜检查球表面。分析了故障原因,疲劳现象和力学。研究表明,地下裂缝在剥落破坏的形成中起主要作用。这些裂纹起源于材料的体积缺陷,并在主拉伸应力的作用下扩展形成椭圆形疲劳剥落。主拉伸应力随着接触载荷的增加而增加,从而导致剥落的形成并降低滚动接触寿命。主拉伸应力越大,近表面的剥离就越严重。在相同条件下,体积缺陷越靠近表面,发生故障的可能性越大,滚动接触寿命越短。

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