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首页> 外文期刊>International Journal of Damage Mechanics >Damage mechanics-based approach to studying effects of overload on fatigue life of notched specimens
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Damage mechanics-based approach to studying effects of overload on fatigue life of notched specimens

机译:基于损伤基于机制的损伤方法对缺口标本疲劳寿命的研究

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摘要

A continuum damage mechanics-based method is adopted to predict the fatigue life of notched specimens subjected to constant amplitude cyclic loading while containing single or multiple overloads. The residual stress and plastic damage induced by an overload are considered to be the main factors affecting the fatigue life of a specimen. The residual stress and plastic strain fields of a notched specimen are calculated using the elastic–plastic finite element method. The mean stress of the following cyclic loading is then varied by superimposing the residual stress. Meanwhile, the plastic damage is calculated based on the ductile damage model and accumulated into the total damage of the material. The quantitative effects of an overload on the damage evolution and the fatigue life are evaluated. Furthermore, the effects of the damage–overload ratio on the variation of the residual stress induced by an overload are investigated, and the effects of the occurrence time for a single overload and the occurrence frequency for multiple overloads are studied.
机译:采用连续损伤力学的方法来预测经受单一或多重过载的恒定幅度循环载荷的缺口试样的疲劳寿命。过载引起的残余应力和塑料损伤被认为是影响标本疲劳寿命的主要因素。使用弹性塑料有限元法计算缺口标本的残余应力和塑料应变场。然后通过叠加残余应力,改变以下环状负载的平均应力。同时,塑料损坏是基于延性损伤模型计算的,并积累到材料的总损坏中。评估过载对损伤进化和疲劳寿命的定量影响。此外,研究了损伤过载比对由过载引起的残余应力变化的影响,研究了单个过载的发生时间和多重过载的发生频率的影响。

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