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首页> 外文期刊>Journal of Engineering Mechanics >Determination of Dynamic Crack Initiation and Propagation Toughness of a Rock Using a Hybrid Experimental-Numerical Approach
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Determination of Dynamic Crack Initiation and Propagation Toughness of a Rock Using a Hybrid Experimental-Numerical Approach

机译:混合实验-数值方法确定岩石的动态裂纹萌生和扩展韧度

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摘要

In order to determine the mode-I (opening mode) dynamic fracture toughness of a rock, cracked-straight-through Brazilian disc (CSTBD) specimens with strain gauges glued on the specimen's surface were diametrically impacted by a split Hopkinson pressure bar. A hybrid experimental-numerical approach was used to determine the dynamic initiation toughness, and it was also used in conjunction with a universal function to obtain the dynamic propagation toughness. Precautions were taken for getting the time history of dynamic stress intensity factors. Numerical accuracy, stability, and convergence to the solution were guaranteed by analyzing beforehand a widely-recognized benchmark dynamic crack problem. Using the numerical technique the result of the conducted trial analysis corresponded almost exactly with the classical result. The dynamic initiation toughness and dynamic propagation toughness of the rock increase with increasing dynamic loading rate and crack propagation speed, respectively, demonstrating the same variation tendencies reported in related literature. The present study shows that the experimental-numerical approach is both simple and effective.
机译:为了确定岩石的I型(打开模式)动态断裂韧度,裂口直通巴西圆盘​​(CSTBD)的标本粘附在试样表面,其应变计受到裂口Hopkinson压力棒的径向冲击。混合实验-数值方法用于确定动态初始韧性,并且还与通用函数结合使用以获得动态传播韧性。采取预防措施以获取动态应力强度因子的时间历史。通过预先分析广泛认可的基准动态裂纹问题,可以保证数值的准确性,稳定性和收敛性。使用数值技术进行的试验分析结果几乎与经典结果完全一致。岩石的动态初始韧性和动态传播韧性分别随动态载荷率和裂纹扩展速度的增加而增加,这表明相关文献报道了相同的变化趋势。本研究表明,实验数字方法既简单又有效。

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