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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Numerical investigation on the dynamic strength and failure behavior of rocks under hydrostatic confinement in SHPB testing
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Numerical investigation on the dynamic strength and failure behavior of rocks under hydrostatic confinement in SHPB testing

机译:SHPB检测中静电监测下岩石动态力量和失效行为的数值研究

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Rocks in the deep underground engineering are commonly subjected to hydrostatic in-situ stresses and dynamic loadings simultaneously. Accurate characterizations of the strength and the failure behavior of rocks under coupled hydrostatic confinement and dynamic loading are crucial for the safety of engineering projects. Via discrete element method (DEM), this study systematically investigates the mechanical behavior of granitic specimens under different hydrostatic confinements in split Hopkinson pressure bar (SHPB) testing, regarding seven hydrostatic confinements varying from 0 to 225 MPa and six strain rates varying from 500 to 1500 s(-1) Our results show that the dynamic strength of hydrostatic pressurized rock specimen increases with increasing strain rate, while the rate sensitivity of rock strength decreases as the hydrostatic confinement increases. Simulated acoustic emission distribution demonstrates that the hydrostatic confinement significantly affects the dynamic failure patterns of rocks; as the confinement increases, the failure mode changes from a mixed failure of surface splitting and inner X-type shear to a failure in single shear band. Moreover, for a given strain rate, more integrated rock fragments are generated and the fragment size distribution becomes wider with increasing hydrostatic confinement. In addition, the mass cumulative fraction versus fragment size curves of specimen under different hydrostatic confinements can be characterized by a three parameters generalized extreme value distribution function.
机译:深层地下工程中的岩石通常同时对原位的原位应力和动态载荷进行静水。耦合静水压监禁和动态负荷下岩石的强度和失效行为的精确表征对于工程项目安全至关重要。通过离散元素方法(DEM),本研究系统地研究了分裂霍普金森压力棒(SHPB)测试中的不同静液压监禁下花岗岩试样的力学行为,关于从0到225MPa的七个变化和从500变化的六个应变速率1500 S(-1)我们的结果表明,随着应变速率的增加,静压加压岩石标本的动态强度增加,而随着静水压限制增加,岩石强度的速率敏感性降低。模拟声学排放分布表明,静液压监禁显着影响岩石的动态故障模式;随着限制的增加,失效模式从表面分割和内X型剪切的混合失败变为单剪切带中的故障。此外,对于给定的应变速率,产生更多的集成岩碎片,并且随着静水压限制的增加变宽了片段尺寸分布。此外,通过三个参数广义极值分布函数的特征,在不同的静水压围绕不同的静压隔音下的质量累积级分与样品的片段大小曲线。

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