首页> 外文会议>Asian-Australasian Conference on Composite Materials;ACCM; 20061127-30;20061127-30; Hong Kong(CN);Hong Kong(CN) >Effect of Stress Singularity on Stress Distribution and Initial Debonding of Interface End
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Effect of Stress Singularity on Stress Distribution and Initial Debonding of Interface End

机译:应力奇异性对应力分布和界面端初始剥离的影响

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Interfacial stress distribution of bonded quarter planes subjected a concentrated force was re-investigated based on Bogy's solution [1]. It's found that the characteristic length of the singularity of interface end (δ), varies with the index of stress singularity at interface end from millimeter to nanometer. This is a unique characteristic of stress singularity at interface end. How the characteristic length of the singularity of interface end (δ) influences the initial de-bonding of the interface end is a new question worth to pay attention. It's found in the photoelasticity experiments that usually the debonding initiated at the interface end with singularity, but as the index of stress singularity, as well as the characteristic length of singularity of interface end, decrease to some extent, the initial debonding moves to an inner point near the interface end. This phenomenon clearly shows the index of stress singularity has obvious influence on the debonding of interface end.
机译:根据Bogy的解[1],重新研究了集中力作用下的粘结四分之一平面的界面应力分布。研究发现,界面端奇点的特征长度(δ)随界面端应力奇点的指数从毫米到纳米而变化。这是界面端应力奇异性的独特特征。接口端奇异点(δ)的特征长度如何影响接口端的初始脱键是一个值得关注的新问题。在光弹性实验中发现,通常在界面端以奇异性开始脱胶,但是随着应力奇异性指数以及界面端奇异性的特征长度在一定程度上减小,初始脱胶会向内部移动。点靠近接口末端。这种现象清楚地表明应力奇异性指数对界面端的脱粘有明显的影响。

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