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Quasi-static fracturing in double-flawed specimens under uniaxial loading: the role of strain rate

机译:单轴载荷下双缺陷标本中的准静态压裂:应变率的作用

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Mechanical properties and cracking behaviors of flaw-weakened rock mass are distinguishably influenced by the quasi-static strain rate. Such advanced knowledge is mainly obtained through the numerical simulations, which are rarely verified experimentally. This paper carries out a coupled experimental-numerical investigation on double-flawed rock-like specimens at different quasi-static strain rates, with consideration given to the macro-mechanical properties, the quasi-static cracking behaviors and the underlying fracture mechanism. Three ordinary arrays of double pre-existing flaws, namely, the coplanar array, the vertical non-overlapping array and the vertical aligning array, are analyzed experimentally. The obtained results show that the crack initiation stress and the peak stress of double flaw-contained specimens generally increase with increasing the strain rate. The extension length of the first macroscopic crack, the crack initiation mode, the amount of far-field cracks, and the degree of ultimate fragmentation in double flaw-contained specimens are closely related to the strain rate. Furthermore, the vertical non-overlapping array of double pre-existing flaws is studied numerically by using peridynamics. The quasi-static fracture behaviors obtained by peridynamics are in good agreement with the experimental observations. The stress concentrates around the tips of flaws when the strain rate is relatively low, while apart from around the tips of flaws, the stress concentration also occurs in the interior of specimens when the strain rate is relatively high. This study provides the better understanding of the quasi-static strain rate effects on mechanical properties and fracture behaviors of rock mass, in particular those containing natural flaws that appear in sets or groups with similar orientation and characteristics.
机译:缺陷弱化岩体的机械性能和开裂行为可区分地受准静态应变率的影响。这种先进的知识主要通过数值模拟获得,这些数值模拟很少经过实验验证。本文采用不同准静态应变率的双缺陷岩样标本对双缺陷岩样标本进行耦合的实验数值研究,考虑到宏观力学性能,准静态开裂行为和底层断裂机制。实验地分析了三个普通的双重预先存在的缺陷阵列,即共面阵列,垂直非重叠阵列和垂直对准阵列。所得结果表明,随着应变率的增加,裂纹引发应力和双缺陷样品的峰值应力通常增加。第一宏观裂缝的延伸长度,裂纹启动模式,远场裂缝的量和双缺陷样本中的最终碎片的程度与应变率密切相关。此外,通过使用白颌动力学来研究垂直非重叠阵列的双预先存在的漏洞。智测获得的准静态断裂行为与实验观察吻合良好。当应变速率相对较低时,应力集中在缺陷的尖端周围,同时除了缺陷的尖端外,当应变速率相对较高时,应力浓度也发生在标本的内部。该研究提供了更好地了解对岩体机械性能和岩体裂缝行为的准静态应变率影响,特别是那些含有在具有相似取向和特征的组或组中出现的天然缺陷的缺陷。

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