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首页> 外文期刊>Rock Mechanics and Rock Engineering >Dynamic Fracture Properties of Rocks Subjected to Static Pre-load Using Notched Semi-circular Bend Method
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Dynamic Fracture Properties of Rocks Subjected to Static Pre-load Using Notched Semi-circular Bend Method

机译:使用缺口半圆形弯曲法对静电预载荷进行静态载荷的动态断裂性能

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摘要

A dynamic load superposed on a static pre-load is a key problem in deep underground rock engineering projects. Based on a modified split Hopkinson pressure bar test system, the notched semi-circular bend (NSCB) method is selected to investigate the fracture initiation toughness of rocks subjected to pre-load. In this study, a two-dimensional ANSYS finite element simulation model is developed to calculate the dimensionless stress intensity factor. Three groups of NSCB specimen are tested under a pre-load of 0, 37 and 74 % of the maximum static load and with the loading rate ranging from 0 to 60 GPa m(1/2) s(-1). The results show that under a given pre-load, the fracture initiation toughness of rock increases with the loading rate, resembling the typical rate dependence of materials. Furthermore, the dynamic rock fracture toughness decreases with the static pre-load at a given loading rate. The total fracture toughness, defined as the sum of the dynamic fracture toughness and initial stress intensity factor calculated from the pre-load, increases with the pre-load at a given loading rate. An empirical equation is used to represent the effect of loading rate and pre-load force, and the results show that this equation can depict the trend of the experimental data.
机译:静态预负载上叠加的动态负荷是深度地下岩石工程项目中的关键问题。基于改进的分裂霍普金森压力杆测试系统,选择缺口半圆形弯曲(NSCB)方法来研究对预载预载的岩石的断裂起始韧性。在该研究中,开发了一种二维ANSYS有限元模拟模型来计算无量纲应力强度因子。在最大静载荷的最大载荷的预载荷为0,37和74%的载荷下进行三组NSCB样本,并且加载速率范围为0至60gPa m(1/2)(-1)。结果表明,在给定的预载荷下,岩石的断裂起始韧性随着装载速率而增加,类似于材料的典型速率依赖性。此外,动态岩体断裂韧性随着给定负载速率的静态预载荷而降低。定义为从预载荷计算的动态断裂韧性和初始应力强度因子的总断裂韧性,随着给定负载率的预载荷而增加。经验方程用于表示装载速率和预负载力的效果,结果表明,该等式可以描绘实验数据的趋势。

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