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Elastic-plastic analysis of interaction between an interfacial crack and a subinterfacial microcrack in bi-materials

机译:双材料界面裂纹与次界面微裂纹相互作用的弹塑性分析

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摘要

In the present work the finite element method is used to analyze the effect of interaction between an interfacial crack and a microcrack in ceramic/aluminum bi-materials. The behaviour is analyzed by the determination of the J integral, the plastic zone at the tips of the interfacial crack and the microcrack. The effects of longitudinal and transversal distance between the tips of the two cracks and the rotation of the microcrack are examined. The obtained results allow us to deduce a correlation between the position of the microcrack and the J integral and the plastic zone. The obtained results shows that the J integral at the interfacial crack tip reaches a maximum value when the microcrack is moved in the vicinity of the interfacial crack. With this distance the effect of interaction is marked more; the stress field at the microcrack tip and that of the interfacial crack generates only one plastic zone at the interfacial crack tip. The maximum size of the plastic zone is localised at the interfacial crack tip. Those of the two tips of the microcrack are very weak and even negligible in front of the zone plasticized at the interfacial crack tip. (c) 2008 Elsevier B.V. All rights reserved.
机译:在目前的工作中,有限元方法用于分析陶瓷/铝双材料中界面裂纹和微裂纹之间相互作用的影响。通过确定J积分,界面裂纹和微裂纹尖端的塑性区来分析行为。研究了两个裂纹尖端之间的纵向和横向距离以及微裂纹旋转的影响。获得的结果使我们能够推断出微裂纹的位置与J积分和塑性区之间的相关性。所得结果表明,当微裂纹在界面裂纹附近移动时,界面裂纹尖端处的J积分达到最大值。有了这个距离,互动的效果就会更加明显。微裂纹尖端和界面裂纹的应力场在界面裂纹尖端仅产生一个塑性区。塑性区的最大尺寸位于界面裂纹尖端。微裂纹的两个尖端的那些非常弱,甚至在界面裂纹尖端塑化的区域的前面甚至可以忽略不计。 (c)2008 Elsevier B.V.保留所有权利。

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