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A strip yield model for two collinear cracks in plates of arbitrary thickness

机译:任意厚度的板中两个共线裂纹的带材屈服模型

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摘要

As two cracks grow and approach each other under fatigue loading, a deleterious interaction between them can considerably affect the crack growth rate, making theoretical evaluations and experimental data from a single isolated crack case considerably inaccurate. The aim of the present study is to investigate the interaction between two collinear cracks of equal length, taking into account the plate's thickness, effect, which was demonstrated to have a large effect on fatigue crack growth in the case of a single crack. The obtained solution to the problem is based on the Dugdale strip yield model and the distributed dislocation technique. In addition, a fundamental solution for an edge dislocation in a finite thickness plate is utilised. The present solution shows a very good agreement with previously published results for some limiting cases. The obtained results confirm a significant dependence of the interaction and stress intensity factors on the plate thickness, which can dramatically affect the plastic collapse conditions as well as fatigue crack growth rates.
机译:当两个裂纹在疲劳载荷作用下彼此成长并相互靠近时,它们之间的有害相互作用会极大地影响裂纹的生长速度,从而使单个孤立裂纹案例的理论评估和实验数据变得非常不准确。本研究的目的是研究两个等长共线裂纹之间的相互作用,同时考虑到板的厚度,效应,这被证明对单个裂纹情况下的疲劳裂纹扩展具有很大的影响。该问题的解决方案基于Dugdale带材屈服模型和分布式位错技术。另外,利用了有限厚度板中的边缘错位的基本解决方案。对于某些限制情况,本解决方案与先前发布的结果显示出很好的一致性。获得的结果证实了相互作用和应力强度因子对板厚度的显着依赖性,这可以显着影响塑性塌陷条件以及疲劳裂纹的增长率。

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