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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Stress singularity analysis of a crack terminating at the interface of an anisotropic layered composite
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Stress singularity analysis of a crack terminating at the interface of an anisotropic layered composite

机译:各向异性层状复合材料界面处裂纹终止的应力奇异性分析

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摘要

The order of stress singularities at the tip of an inclined crack terminating at the interface of an anisotropic layered composite is investigated. Both fully bonded and frictional interfaces are considered. The expressions for stresses anddisplacements are obtained by using the Stroh formalism. The stresses at the crack tip are expressed in the formσ{sub}ij = r{sup}-kF{sub}ij(θ), where k is the crack-tip singularity'. The singularity k is obtained by solving a characteristic equationwhich incorporates the effects of the interface and the crack faces. The problem can be visualized as two wedges created by a crack, pressing on a half-plane. For the frictional interface, depending on the relative slip directions of the two wedges, boththe case of the two wedges slipping in opposite directions and the case of the two wedges slipping in the same direction are treated. In the numerical calculation of the singularities, a high modulus graphite/epoxy layered composite is used and the effect of the crack inclination on the stress singularity k is graphically presented. In general, there are three roots of k for the fully bonded interface, while there are only two roots of k for the slipping interface.
机译:研究了在各向异性层状复合材料界面处终止的倾斜裂纹尖端处的应力奇异顺序。同时考虑了完全粘结和摩擦界面。应力和位移的表达式是使用Stroh形式主义获得的。裂纹尖端处的应力以σ{sub} ij = r {sup} -kF {sub} ij(θ)的形式表示,其中k是裂纹尖端的奇异性。奇异性k是通过求解特征方程获得的,该方程包含了界面和裂纹面的影响。可以将问题可视化为裂缝产生的两个楔形,压在半平面上。对于摩擦界面,根据两个楔形件的相对滑动方向,处理两个楔形件在相反方向上滑动的情况以及两个楔形件在相同方向上滑动的情况。在奇异性的数值计算中,使用了高模量的石墨/环氧树脂层状复合材料,并以图形方式显示了裂纹倾角对应力奇异性k的影响。通常,全键合界面的k的根为3,而滑动界面只有k的两个根。

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