非比例载荷历史下Miner规则在多轴疲劳寿命计算中的适用性

M. Meggiolaro, J. Castro, Samuel Elias Ferreira, Hao Wu
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引用次数: 2

摘要

疲劳设计程序和计算机代码必须使用一些损伤累积规则来处理可变振幅载荷(VAL),由于缺乏明显更好的选择,通常使用Palmgren-Miner(或Miner)线性规则。然而,疲劳寿命本质上对VAL事件的顺序很敏感,例如,VAL事件可能引起残余应力,从而改变临界点应力状态,从而对其后续残余寿命产生很大影响。另一方面,一般来说,非线性损伤累积规则不是鲁棒的,只对某些特定的载荷顺序产生比Miner规则更好的预测,需要逐个分析。因此,Miner的线性损伤规则仍然是实际疲劳计算和评估的常用选择,至少在与依次考虑塑性诱导效应的方法相结合时,根据一个周期一个周期的临界点应力/应变历史,可以给出合理的预测。在这项工作中,Miner法则对退火管状316L不锈钢试样的非比例拉伸-扭转载荷进行了评估。应用十字、菱形、圆形或方形路径的正切应变历史,并测量其疲劳寿命。然后,将这些单独路径形状的组合组成的更复杂的VAL路径应用于其他试样,其相关疲劳寿命根据Miner规则进行预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the applicability of Miner’s rule for multiaxial fatigue life calculations under non-proportional load histories
Fatigue design routines and computer codes must use some damage accumulation rule to deal with variable amplitude loadings (VAL), usually Palmgren-Miner (or Miner’s) linear rule for lack of a clearly better option. Nevertheless, fatigue lives are intrinsically sensitive to the order of VAL events, which may e.g. induce residual stresses and thus change the critical point stress state, much affecting its subsequent residual life. On the other hand, in general, non-linear damage accumulation rules are not robust, resulting in better predictions than Miner’s rule only for some specific load orders, requiring a case-by-case analysis. Therefore, Miner’s linear damage rule still is the usual choice in practical fatigue calculations and assessments, giving reasonable predictions at least when properly combined with approaches that sequentially consider plasticity-induced effects, following the critical point stress/strain history in a cycle-by-cycle basis. In this work, Miner’s rule is evaluated for non-proportional tension-torsion loadings on annealed tubular 316L stainless steel specimens. Normal-shear strain histories following either cross, diamond, circular or square paths are applied, and their fatigue lives are measured. Then, more complex VAL paths consisting of combinations of these individual path shapes are applied in other specimens, whose associated fatigue lives are predicted based on Miner’s rule.
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