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Effect of Radial Inertia Confinement on Dynamic Compressive Strength of Concrete in SHPB Tests

机译:径向惯性监禁对SHPB试验混凝土动态抗压强度的影响

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This paper extends the study of Dharan on the stress state in an elastic solid specimen subjected to axial strain acceleration to compressible materials. And an improved Dharan model is presented. Based on the Drucker-Prager strength criterion, analytical equations of the radial inertia confinement effect on dynamic compressive strength of concrete in split Hopkinson pressure bar tests is derived. Comparison and discussion on the analytical, experimental and numerical results are performed. It is proved that the strain rate effect of compressive strength of concrete materials is a pseudo material property partly caused by the radial inertia confinement. Special attentions should be paid to dynamic tests of low-strength concrete to get the real mechanical properties.
机译:本文延伸了Dharan对经受轴向应变加速的弹性固体样品中的应力状态的研究。提出了一种改进的Dharan模型。基于Drucker-Prager强度标准,推导出径向惯性径向惯性监控效果的分析方程。推导了拆分霍普金森骨压杆试验中混凝土动态抗压强度。对分析,实验和数值结果进行比较和讨论。事实证明,混凝土材料抗压强度的应变率效应是由径向惯性限制造成的伪材料特性。应对低强度混凝土的动态测试支付特殊关注以获得真正的机械性能。

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