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Influence of initial stresses on stress intensity factors at crack tips in a composite

机译:初始应力对复合材料裂纹尖端应力强度因子的影响

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摘要

The influence of initial tension or compression along cracks on the stress intensity factor (SIF) at crack tips under the action of additional normal forces on crack edges is studied for infinite bodies. A strip made of a composite material is considered. The strip ends are simply supported, and the strip contains a crack whose edges are parallel to its face planes. The strip is first stretched or compressed along crack edges, and then additional uniformly distributed normal forces are applied to the crack edges. The influence of the initial tension (compression) on the SIF caused by the additional normal forces is studied. The corresponding boundary-value problems are modelled with the use of the three-dimensional linearized theory of elasticity. All the investigations are carried out numerically by employing the finite-element method. The values of SIF are calculated by the energy release method.
机译:对于无限大的物体,研究了沿裂纹的初始拉伸或压缩对裂纹尖端处的应力强度因子(SIF)的影响,该应力强度因子是在裂纹边缘附加法向力的作用下产生的。考虑由复合材料制成的条。只需简单地支撑板条的端部,板条就包含一条裂纹,其边缘平行于其平面。该带材首先沿裂纹边缘拉伸或压缩,然后向裂纹边缘施加附加的均匀分布的法向力。研究了由附加法向力引起的初始张力(压缩)对SIF的影响。使用三维线性化弹性理论对相应的边值问题进行建模。所有的研究都是采用有限元方法进行的。 SIF的值通过能量释放方法计算。

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