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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Fracture coalescence in rock-type materials under uniaxial and biaxial compression
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Fracture coalescence in rock-type materials under uniaxial and biaxial compression

机译:单轴和双轴压缩下岩石型材料的断裂聚结

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摘要

Fracture coalescence, which plays an important role in the behavior of brittle materials, is investigated by loading pre-fractured specimens of gypsum?, used as a rock model material, in uniaxial and biaxial compression. Several new phenomena and their dependence or? geometry and other conditions are observed. The specimens have two pre-existing fractures or flaws that are arranged in different geometries, and that carl be either open ol closed. Two different test series are performed with these flaw geometries, one under uniaxial loading and one with biaxial loading in which confining stresses of 2.5, 5.0, 7.5 and 10 MPa are applied. As the vertical (axial) load is increased, new cracks emanate from the flaws and eventually coalesce. Flaw slippage, wing crack initiation, secondary: crack initiation, crack coalescence, and failure are observed. Two types of cracks occur: wing cracks, which are tensile cracks, and secondary cracks which initiate as shear cracks in a plane roughly co-planar with the flaw. The secondary cracks usually propagate as shear cracks in the same plane hut, depending on the geometry, they also propagate out of plane as either tensile ol shear cracks. The wing clacks initiate at the flaw tips for uniaxial or low confinement biaxial conditions bur move to the middle of the flaw and disappear completely for higher confining stresses. Thr ec types of coalescence, which depend on the geometry of the flaws and to some extent on stress conditions, occur, they, car? be distinguished by different combinations of wing cracks and secondary cracks. For closed flaw specimens, at lens; partial debonding and slippage of the flaws is required prior to initiation of a crack. In uniaxial compression coalescence and failure occur simultaneously,, while failure in biaxial compression occurs after coalescence. (C) 1998. Published by Elsevier Science Ltd. All rights reserved. [References: 23]
机译:通过在单轴和双轴压缩中加载用作岩石模型材料的石膏的预断裂标本,研究了在脆性材料的行为中起重要作用的断裂聚结。几种新现象及其依赖性还是?观察到几何形状和其他条件。标本有两个预先存在的断裂或裂缝,排列成不同的几何形状,并且卡尔可以是开放的也可以是封闭的。针对这些缺陷几何形状执行了两个不同的测试系列,一个系列在单轴载荷下,另一个在双轴载荷下施加了2.5、5.0、7.5和10 MPa的约束应力。随着垂直(轴向)载荷的增加,裂纹会产生新的裂纹,最终会聚结。缺陷滑动,机翼裂纹萌生,次生:观察到裂纹萌生,裂纹合并和破坏。发生两种类型的裂纹:机翼裂纹(即拉伸裂纹)和次要裂纹,其在与裂纹大致共面的平面中以剪切裂纹的形式开始。次级裂纹通常以剪切裂纹的形式在同一平面小屋中传播,具体取决于几何形状,它们也以拉伸裂纹或剪切裂纹的形式在平面外传播。在单轴或低约束双轴情况下,机翼裂纹始于裂纹尖端,而bur移动到裂纹的中间,并在较高的约束应力下完全消失。三种类型的结合,取决于缺陷的几何形状,并在一定程度上取决于应力条件,它们是汽车吗?通过机翼裂纹和次级裂纹的不同组合来区分。对于闭合缺陷样品,在镜片处;在产生裂纹之前,需要先进行部分脱胶和打滑。在单轴压缩中,聚结和破坏同时发生,而在双轴压缩中的破坏在聚结之后发生。 (C)1998。由Elsevier Science Ltd.出版。保留所有权利。 [参考:23]

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