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Fatigue Life Predictions under General Multiaxial Loading Based on Simple Material Properties

机译:基于简单材料特性的一般多轴载荷下的疲劳寿命预测

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摘要

A procedure for fatigue life estimation of components and structures under variable amplitude multiaxial loadings based on simple and commonly available material properties is presented. Different aspects of the analysis consisting of load cycle counting method, plasticity model, fatigue damage parameter, and cumulative damage rule are presented. The only needed material properties for the proposed procedure are hardness and monotonic and axial cyclic deformation properties (HB, K, n, K' and n'). Rainflow cycle counting method is used for identifying number of cycles. Non-proportional cyclic hardening is estimated from monotonic and axial cyclic deformation behaviors. A critical plane approach is used to quantify fatigue damage under variable amplitude multiaxial loading, where only material hardness is used to estimate the fatigue curve, and where the needed deformation response is estimated based on Tanaka's non-proportionality parameter. The commonly used linear damage rule is then used as a cumulative damage rule, to predict fatigue life. This procedure, when compared to experimental results, is shown to yield reasonably accurate predictions under some challenging axial-torsion loading conditions for a medium carbon steel with no non-proportional hardening, and a stainless steel with significant non-proportional hardening.
机译:提出了一种基于简单且常用的材料特性,在可变振幅多轴载荷下估算零件和结构疲劳寿命的方法。提出了分析的不同方面,包括载荷循环计数方法,可塑性模型,疲劳损伤参数和累积损伤规则。提议的过程所需的唯一材料特性是硬度以及单调和轴向循环变形特性(HB,K,n,K'和n')。雨水循环计数方法用于识别循环数。非比例循环硬化是根据单调和轴向循环变形行为估算的。临界面方法用于量化可变振幅多轴载荷下的疲劳损伤,其中仅使用材料硬度来估计疲劳曲线,并且根据田中的非比例参数来估计所需的变形响应。然后,将常用的线性损伤规则用作累积损伤规则,以预测疲劳寿命。当与实验结果进行比较时,对于没有非比例硬化的中碳钢和具有显着非比例硬化的不锈钢,在某些极具挑战性的轴向扭转载荷条件下,该程序可得出合理准确的预测。

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