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Modified virtual internal bond fracture constitutive model for concrete

机译:修正的虚拟内部粘结断裂本构模型

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The goal of the research presented here is the development of a Modified Concrete Virtual Internal Bond model (MC-VIB) for concrete. Concrete is often used as a primary material to build protective structures and this paper focuses on the development of a material model for concrete and its application in LS-DYNA in order to simulate the behavior of reinforced concrete (RC) structures under impact and blast loading. This 'fracture-constitutive' VIB model is the further development of earlier work which accounted only for the tensile behavior and fracture of concrete. The proposed model includes the differences in the behavior of concrete in tension, compression and shear. Consequently, while the previous VIB model had only two material parameters, the MC-VIB model has seven material parameters. The model parameters are calibrated based on the stress-strain behavior of single element and cylinder models of concrete with a uniaxial compressive strength of 27.6 MPa. The material models currently available in LS-DYNA require a number of input parameters that are often automatically generated by giving the compressive strength of concrete. The stress strain curves from the MC-VIB model are compared to the material models for concrete available in LS-DYNA and standard curves obtained by an accepted equation and has shown good correspondence. It is shown that the MC-VIB model is fairly insensitive to mesh size and size effect studies presented here has successfully demonstrated the ability of the model to account for the inherent inertial confining effect as the structure size increases. The effect and sensitivity of the material parameters has been studied using the simulated stress-strain response of concrete in tension and compression under dynamic loading and finally recommendations have been made for the material parameter values for a standard concrete mix of 27.6 MPa. (C) 2016 Elsevier Ltd. All rights reserved.
机译:此处提出的研究目标是为混凝土开发改良的混凝土虚拟内部粘结模型(MC-VIB)。混凝土通常被用作构建防护结构的主要材料,本文重点研究混凝土材料模型的开发及其在LS-DYNA中的应用,以模拟钢筋混凝土(RC)结构在冲击和爆炸载荷下的行为。 。这种“断裂本构”的VIB模型是早期工作的进一步发展,该工作仅考虑了混凝土的拉伸性能和断裂。所提出的模型包括混凝土在拉伸,压缩和剪切性能方面的差异。因此,虽然以前的VIB模型只有两个材料参数,但MC-VIB模型却有七个材料参数。基于具有27.6 MPa单轴抗压强度的混凝土的单元素和圆柱模型的应力-应变行为来校准模型参数。 LS-DYNA中当前可用的材料模型需要许多输入参数,这些参数通常通过提供混凝土的抗压强度自动生成。将MC-VIB模型的应力应变曲线与LS-DYNA中可用的混凝土材料模型进行了比较,并通过公认的方程式获得了标准曲线,并显示出很好的对应性。结果表明,MC-VIB模型对网格尺寸不敏感,此处提出的尺寸效应研究已成功证明了该模型具有解决结构尺寸增大时固有惯性约束效应的能力。使用模拟的混凝土在动态载荷下的拉伸和压缩应力-应变响应,研究了材料参数的影响和敏感性,最后对27.6 MPa标准混凝土配合比的材料参数值提出了建议。 (C)2016 Elsevier Ltd.保留所有权利。

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