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Numerical predictions of ballistic limits for concrete slabs using a modified version of the HJC concrete model

机译:使用改良版HJC混凝土模型的混凝土板弹道极限数值预测

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摘要

Some modifications to the Holmquist-Johnson-Cook (HJC) model (1993) for concrete under impact loading conditions are proposed. First, the pressure-shear behaviour is enhanced by including the influence of the third deviatoric stress invariant to take into account the substantial shear strength difference between the tensile and compressive meridians. Second, the modelling of strain-rate sensitivity is slightly changed so that the strain-rate enhancement factor goes to unity for zero strain rate. Third, three damage variables describing the tensile cracking, shear cracking and pore compaction mechanisms are introduced. A critical review of the constitutive model with alternative proposals for parameter identification is given. The model parameters are obtained for two concrete qualities, and perforation of concrete slabs is considered numerically and compared with experimental results from the literature. Ballistic limit assessments with deviations under 8% when compared to the experimental results are obtained, indicating that the modified version of the HJC concrete model represents a good compromise between simplicity and accuracy for large-scale computations of concrete plates impacted by projectiles.
机译:提出了在冲击载荷条件下对混凝土的Holmquist-Johnson-Cook(HJC)模型(1993)的一些修改。首先,考虑到拉伸子午线和压缩子午线之间的实质剪切强度差异,通过包括第三偏应力不变式的影响来增强压剪性能。其次,应变率敏感性的建模略有变化,以使应变率增强因子对于零应变率变为统一。第三,介绍了描述拉伸断裂,剪切断裂和孔隙压实机理的三个损伤变量。对本构模型进行了严格的审查,并提出了用于参数识别的替代建议。获得了两种混凝土质量的模型参数,并在数值上考虑了混凝土板的穿孔,并与文献中的实验结果进行了比较。与实验结果相比,获得的弹道极限评估偏差小于8%,这表明HJC混凝土模型的修改版本代表了在大规模计算受弹丸影响的混凝土板的简单性和准确性之间的良好折衷。

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