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Relation between Residual and Hoop Stresses and Rolling Bearing Fatigue Life

机译:残余应力和环向应力与滚动轴承疲劳寿命之间的关系

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Rolling-element bearings operated at high speed or high vibration may require a tight interference fit between the bore of the bearing and shaft to prevent rotation of the bearing bore around the shaft and fretting damage at the interfaces. Previous work showed that the hoop stresses resulting from tight interference fits can reduce bearing lives by as much as 65%. Where tight interference fits are required, case-carburized steel such as AISI 9310 or M50 NiL is often used because the compressive residual stresses inhibit subsurface crack formation and the ductile core inhibits inner-ring fracture. The presence of compressive residual stress and its combination with hoop stress also modifies the Hertz stress life relation. This article analyzes the beneficial effect of residual stresses on rolling-element bearing fatigue life in the presence of high hoop stresses for three bearing steels. These additional stresses were superimposed on Hertzian principal stresses to calculate the inner race maximum shearing stress and the resulting fatigue life of the bearing. The load life exponent p and Hertz stress life exponent n increase in the presence of compressive residual stress, which yields increased life, particularly at lower stress levels. The Zaretsky life equation is described and is shown to predict longer bearing lives and greater load and stress life exponents, which better predicts observed life of bearings made from vacuum-processed steel.
机译:在高速或高振动​​下运行的滚动轴承可能需要在轴承孔和轴之间紧密配合,以防止轴承孔绕轴旋转以及在接口处产生微动损坏。先前的工作表明,由于过紧的过盈配合而产生的环向应力会缩短轴承寿命多达65%。如果需要紧密的过盈配合,通常使用渗碳钢,例如AISI 9310或M50 NiL,因为残余压缩应力会抑制地下裂纹的形成,而延性芯则会抑制内环的破裂。压缩残余应力的存在及其与环向应力的组合也改变了赫兹应力寿命关系。本文分析了三种轴承钢在存在高环向应力的情况下残余应力对滚动轴承疲劳寿命的有益影响。将这些附加应力叠加在赫兹主应力上,以计算内圈的最大剪切应力和轴承的疲劳寿命。在存在压缩残余应力的情况下,负载寿命指数p和赫兹应力寿命指数n会增加,这会延长寿命,尤其是在较低应力水平下。描述了Zaretsky寿命方程,该方程可预测更长的轴承寿命以及更大的载荷和应力寿命指数,从而更好地预测了由真空处理钢制成的轴承的观察寿命。

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