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首页> 外文期刊>Engineering Fracture Mechanics >Numerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analyses
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Numerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analyses

机译:塑性引起的疲劳裂纹闭合的数值模拟,重点在于裂纹扩展方案:2D和3D分析

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In this paper a numerical simulation of plasticity-induced fatigue crack closure is performed using the finite element method. Emphasis is placed on the crack growth scheme usually adopted for modelling fatigue crack growth in crack closure problems. The number of load cycles between node releases usually reported in the literature has been, in general, one or two. The present work shows that increasing the number of load cycles between node releases has a strong effect on the opening stresses, particularly, under plane strain conditions and 3D fatigue cracks, in contrast plane stress shows little variation with increasing number of load cycles. This investigation also suggests that ratchetting may take place close to the crack tip in both plane strain and 3D crack problems. The problem of discontinuous crack closure under plane strain conditions, often reported in the literature, is also addressed.
机译:在本文中,使用有限元方法对塑性引起的疲劳裂纹闭合进行了数值模拟。重点放在通常用于模拟裂纹闭合问题中疲劳裂纹扩展的裂纹扩展方案上。通常,文献中报告的节点释放之间的负载循环数通常为一或两个。目前的工作表明,增加节点释放之间的载荷循环次数对打开应力有很大影响,特别是在平面应变条件和3D疲劳裂纹下,相反,平面应力随载荷循环次数的增加几乎没有变化。这项研究还表明,在平面应变和3D裂纹问题中,咬合可能发生在靠近裂纹尖端的地方。还解决了文献中经常报道的在平面应变条件下不连续裂纹闭合的问题。

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