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Numerical 3D modeling of the effects of strain rate and confining pressure on the compressive behavior of Kuru granite

机译:应变率和围压对库鲁花岗岩压缩行为影响的数值3D建模

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This paper deals with numerical modeling of the compressive behavior of granite rock under high strain rate dynamic loading and wide range of confining pressure. For this end, a constitutive model based on damage mechanics and viscoplasticity for rock is formulated and implemented in explicit dynamics FEM. The viscoplastic part is based on a simple power law type yield criterion that incorporates the rate dependency with a linear viscosity term. Moreover, a Rankine type of tensile cut-off is employed. The damage part of the model is formulated with separate scalar damage variables in tension and compression. The model is calibrated for Kuru granite and validated with the experimental data from dynamic compression tests at the strain rate of 600 1/s up to 225 MPa of confining pressure. The numerical simulations demonstrate that, despite the underlying continuum modeling approach, the model captures the correct experimental failure modes, including the transition from single-to-multiple fragmentation, as well as the dynamic compressive strengths at different confining pressures. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了高应变率动态载荷和宽围压范围内花岗岩岩石压缩行为的数值模拟。为此,建立了基于损伤力学和粘塑性的岩石本构模型,并在显式动力学有限元法中实现。粘塑性部分基于简单的幂律类型屈服准则,该准则将速率依赖性与线性粘度项合并在一起。此外,采用兰金类型的拉伸截止。模型的损坏部分由拉伸和压缩中的单独标量损坏变量组成。该模型针对库鲁(Kuru)花岗岩进行了校准,并使用动态压缩测试的实验数据在600 1 / s的应变速率下达到225 MPa的围压进行了验证。数值模拟表明,尽管采用了基本的连续建模方法,该模型仍能捕获正确的实验失效模式,包括从单次断裂到多次断裂的转变,以及在不同围压下的动态抗压强度。 (C)2017 Elsevier Ltd.保留所有权利。

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