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Multiaxial fatigue life calculation model for components in rolling-sliding line contact with application to gears

机译:滑移线接触部件的多轴疲劳寿命计算模型及其在齿轮上的应用

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摘要

Important components such as gears, rollers, or bearings operate in rolling-sliding contact loading conditions. Determination of their fatigue lives remains a challenging task due to complex states of stress and strain in the contact region, as well as complex contact conditions such as variable loading amplitude and complex geometry of contact. A mathematical model of rolling-sliding line contact combined with a multiaxial fatigue life calculation model based on the Fatemi-Socie critical plane crack initiation criterion is proposed. The developed model was applied to gears' teeth in mesh and compared with fatigue lives of gears reported in the literature. Good agreement was determined confirming the validity of the proposed model. A further advantage is obtaining locations of initiated cracks and the orientation of critical plane(s), which can subsequently be used for the estimation of crack shapes in initial phases of their growth and the damage type that they can be expected to develop into.
机译:重要组件,例如齿轮,滚子或轴承,在滚动滑动接触载荷条件下运行。由于接触区域中应力和应变的复杂状态以及复杂的接触条件(例如可变的加载振幅和复杂的接触几何形状),确定它们的疲劳寿命仍然是一项艰巨的任务。提出了基于Fatemi-Socie临界面裂纹萌生准则的滑移线接触数学模型与多轴疲劳寿命计算模型。将开发的模型应用于齿轮的啮合齿中,并与文献中报道的齿轮的疲劳寿命进行了比较。确定了良好的协议,确认了所提出模型的有效性。另一个优点是获得了起始裂纹的位置和临界面的方向,这些临界值随后可用于估算裂纹扩展的初始阶段的裂纹形状以及预计会发展成的损伤类型。

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