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A new distortion energy-based equivalent stress for multiaxial fatigue life prediction

机译:基于变形能量的等效应力的多轴疲劳寿命预测

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摘要

A new equivalent stress amplitude expression has been developed for the assessment of fatigue life in components under multiaxial loading. The expression was generated by incorporating non-linear/ plastic stress-strain relation into a mechanical energy calculation, and then applying the calculation to the distortion energy theory for a cyclic loading case. Therefore, the new uniaxial equivalent stress expression determines an appropriate stress amplitude value for multiaxial cyclic loading. The purpose of the equivalent stress value is to determine multiaxial fatigue failure using an energy-based fatigue life prediction criterion. The governing understanding behind the criterion states that the physical damage quantity for failure is equal to the accumulated strain energy in a monotonic fracture, which is also equal to the accumulated strain energy during fatigue failure. Using the new equivalent stress amplitude expression and the energy-based life prediction method, a comparison is made between prediction results and multiaxial empirical data. The multiaxial data was acquired by a vibration-based biaxial bending fatigue test and a torsion fatigue test with an assumed axial misalignment. The results of the comparison provide encouragement regarding the capability of the newly developed equivalent stress amplitude expression for fatigue life prediction.
机译:已经开发了一种新的等效应力幅度表达式,用于评估多轴载荷下组件的疲劳寿命。该表达式是通过将非线性/塑性应力-应变关系纳入机械能计算中,然后将该计算应用于循环荷载工况的变形能理论来生成的。因此,新的单轴等效应力表达式确定了适用于多轴循环载荷的适当应力振幅值。等效应力值的目的是使用基于能量的疲劳寿命预测标准来确定多轴疲劳失效。该标准背后的主要理解是,失效的物理损伤量等于单调断裂中的累积应变能,也等于疲劳失效期间的累积应变能。使用新的等效应力振幅表达式和基于能量的寿命预测方法,对预测结果和多轴经验数据进行了比较。多轴数据是通过基于振动的双轴弯曲疲劳试验和扭转疲劳试验(假定轴向未对准)获得的。比较的结果为关于新开发的等效应力振幅表达式的疲劳寿命预测能力提供了鼓励。

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