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An alternative definition of the shear stress amplitude based on the Maximum Rectangular Hull method and application to the C-S(Carpinteri-Spagnoli) criterion

机译:基于最大矩形壳法的剪应力振幅的替代定义及其在C-S(Carpinteri-Spagnoli)准则中的应用

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In the present paper, the fatigue strength estimation capabilities of the modified C-S (Carpinteri-Spagnoli) criterion are improved by employing the Maximum Rectangular Hull (MRH) method proposed by the first author. The C-S criterion is a multiaxial high-cycle fatigue criterion based on the critical plane approach and takes into account both shear stress (Mode Ⅱ) and normal stress (Mode Ⅰ) mechanisms to evaluate the orientation of the critical plane. The fatigue damage parameter used is given by a nonlinear combination of the equivalent normal stress amplitude, N_(a,eq) and the shear stress amplitude, C_a, acting on the critical plane. In the present paper, the shear stress amplitude is evaluated through the MRH method. Some experimental data available in the literature are compared with the theoretical estimations, concluding that the multiaxial fatigue strength evaluations provided by the C-S criterion are improved when C_a is computed applying the MRH method instead of the Minimum Bounding Circle (MBC) method.
机译:在本文中,通过采用第一作者提出的最大矩形船体(MRH)方法,改进了改进的C-S(Carpinteri-Spagnoli)准则的疲劳强度估计能力。 C-S准则是基于临界平面方法的多轴高周疲劳准则,并考虑了剪切应力(模式Ⅱ)和法向应力(模式Ⅰ)机制来评估临界平面的方向。使用的疲劳损伤参数由等效法向应力幅值N_(a,eq)和作用在临界面上的切应力幅值C_a的非线性组合给出。在本文中,通过MRH方法评估了剪应力振幅。将文献中提供的一些实验数据与理论估算值进行比较,得出结论,当使用MRH方法而不是最小边界圆(MBC)方法计算C_a时,可以改善由C-S准则提供的多轴疲劳强度评估。

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