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Flaking failures originating from microholes of bearings under rolling contact fatigue

机译:滚动轴承疲劳引起的剥落故障源于轴承的微孔

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Rolling contact fatigue tests were carried out using plates with microholes (diameter was about 100 mu m and depth was about 140 mu m) under three different loads (maximum values of Hertzian stress were about 3250, 3550 and 3840 MPa, respectively) and the surface cracks initiating from those holes were observed. It was found that there is a threshold value of maximum Hertzian stress whether surface cracks originate from microholes or not, and its value is between 3250 and 3550 MPa. However, flaking failures occurred even when the stress values were lower than the threshold value. In order to investigate the relation between the flaking failures and the cracks, sectional observations of the subsurface cracks were made before and after the surface layer separations. From these observations, it was found that the subsurface cracks caused the flaking failures even when the maximum value of Hertzian stress was lower than the threshold value of surface crack initiation.
机译:使用带有微孔的板(直径约为100微米,深度约为140微米)在三种不同的载荷(赫兹应力的最大值分别约为3250、3550和3840 MPa)和表面下进行滚动接触疲劳测试观察到由这些孔引起的裂纹。发现无论表面裂纹是否起源于微孔,都有一个最大赫兹应力的阈值,其值在3250和3550MPa之间。但是,即使应力值低于阈值,也会发生剥落故障。为了研究剥落破坏与裂纹之间的关系,在表层分离之前和之后对地下裂纹进行了截面观察。从这些观察结果发现,即使当赫兹应力的最大值低于表面裂纹萌生的阈值时,地下裂纹也导致剥落失败。

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