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Biaxial Fatigue Life Assessment where the Stresses are at Different Frequencies

机译:应力处于不同频率的双轴疲劳寿命评估

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A new fatigue parameter has been further developed to assess the fatigue lives under in-phase and out-of-phase biaxial constant amplitude fatigue stressing where the stresses are at different frequencies. In this parameter, the normal and shear stress and strain ranges have been calculated from the largest stress and strain Mohr's circles. The total damage accumulation in a block loading history has been calculated from the summation of the normal and shear energies on the basis of cycle-by-cycle analysis. The normal and shear energies used in this parameter are divided by the tensile and shear fatigue properties, respectively and the proposed parameter unlike many other parameters, does not use an empirical fitting factor. The proposed fatigue parameter successfully correlated biaxial fatigue lives of thin-walled EN24 steel tubular specimens tested under in-phase and out-of-phase biaxial fatigue stressing where stresses were at different frequencies and included mean values.
机译:进一步开发了新的疲劳参数,以评估在不同频率的同相和异相双轴恒定振幅疲劳应力下的疲劳寿命。在此参数下,已从最大应力和应变莫尔圆计算出法向应力和剪应力和应变范围。在逐周期分析的基础上,根据法向和剪切能的总和计算出了积木装载历史中的总损伤累积。该参数中使用的法向和剪切能分别除以拉伸和剪切疲劳特性,并且与许多其他参数不同,建议的参数不使用经验拟合因子。拟议的疲劳参数成功地将薄壁EN24钢管样品的双轴疲劳寿命相关联,该试件在同相和异相双轴疲劳应力下进行了测试,其中应力处于不同的频率并包含平均值。

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