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Finite-element analysis of fatigue crack closure under plane strain conditions: stabilization behaviour and mesh size effect

机译:平面应变条件下疲劳裂纹闭合的有限元分析:稳定行为和网格尺寸效应

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An elastic-plastic finite-element analysis of fatigue crack closure is performed for plane strain conditions. The stabilization behaviour of crack opening level and the effect of mesh size on the crack opening stress are investigated. It has been well reported that the crack opening level under plane stress conditions becomes stable after the crack advances beyond the initial monotonic plastic zone. In order to obtain a stabilized crack opening level for plane strain conditions, the crack must be advanced through approximately four times the initial monotonic plastic zone. The crack opening load tends to increase with the decrease of mesh size. The mesh size nearly equal to the theoretical plane strain cyclic plastic zone size may provide reasonable numerical results comparable with experimental crack opening data. The crack opening behaviour is influenced by the crack growth increment and discontinuous opening behaviour is observed.
机译:针对平面应变条件进行了疲劳裂纹闭合的弹塑性有限元分析。研究了裂纹开口水平的稳定行为以及网孔尺寸对裂纹开口应力的影响。众所周知,在裂纹扩展到初始单调塑性区之后,在平面应力条件下的裂纹开口水平变得稳定。为了在平面应变条件下获得稳定的裂纹开度,必须使裂纹前进大约四倍于初始单调塑性区。随着网孔尺寸的减小,裂纹的开裂载荷趋于增加。网格尺寸几乎等于理论平面应变循环塑性区的尺寸,可以提供与实验裂缝开度数据相当的合理数值结果。裂纹扩展行为受裂纹扩展量的影响,并且观察到不连续的开放行为。

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