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Simulation of Propagation and Localization of Minute Cracks near a Mode II Crack Tip under Compressive Stresses

机译:压缩应力下模突裂纹尖端近裂缝的传播与定位的模拟

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摘要

The failure behavior of brittle solids under compressive stresses is discussed. It is known that the failure mode of brittle solids under compressive stresses depends strongly upon specimen geometry and loading conditions. A plate specimen often exhibits a split-type fracture characterized by mode I cracks that propagate almost parallel to the direction of compression. On the other hand, a pseudo-mode II fracture in which the failure plane is inclined from the axis of compression can be observed in a compression test of a cylindrical specimen. In the uniaxial compression test of plate-type mortar and PMMA specimens, the macroscopic fracture was dominated by the appearance of mode-I wing cracks and their propagation. However, in a neighborhood of an artificial crack tip, a considerable damage zone was also observed. In order to investigate the mechanism for a formation of damage zone, numerical analyses base on the linear elastic fracture mechanics were carried out. It was found that the damage zone is composed of an echelon of mode I micro-surface cracks and the inclination of the damage zone is about 30° from the axis of compression.
机译:讨论了压缩应力下脆性固体的失效行为。已知压缩应力下脆性固体的破坏模式在标本几何形状和装载条件下强烈取决于强烈的。板标本通常表现出由模式I裂缝,其特征的分裂式骨折,其几乎平行于压缩方向传播。另一方面,在圆柱形样品的压缩试验中,可以观察到失效平面倾斜的伪模式II裂缝,其中在圆柱形样本的压缩测试中可以观察到。在板式砂浆和PMMA标本的单轴压缩试验中,宏观骨折由模式-I翼裂缝的出现主导及其繁殖。然而,在人造裂纹尖端的附近,也观察到相当大的损伤区。为了研究损伤区的形成机制,进行了线性弹性骨折力学基础的数值分析。发现损伤区由模式I微表面裂缝的梯级组成,并且损伤区的倾斜度从压缩轴线约30°。

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