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Experimental confirmation of some factors influencing dynamic concrete compressive strengths in high-speed impact tests

机译:在高速冲击试验中影响动态混凝土抗压强度的一些因素的实验确认

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摘要

This paper reports probably the first systematic experimental investigation of the influences of lateral inertia confinement, end friction confinement and aggregates in high-speed impact tests on dynamic compressive properties of concrete. The influences of the concerned factors on the dynamic increase factor (DIF) are discussed. The proposed DIF relations in Hao and Hao [36] are verified by the experimental data in this study. The results confirm the observations made before based on numerical simulations that lateral inertia confinement effect is dependent on the specimen diameter and strain rate. The influences of aggregate size and volume to DIF are considerable, and aggregates cannot be neglected in experimental or numerical studies. It also confirms that the end friction confinement effect is sensitive to the specimen geometry and strain rate. The equation proposed in Hao et al. [40] based on numerical simulations satisfactorily removes the friction confinement effect on the DIF of concrete material strength obtained in impact test.
机译:本文可能是对高速冲击试验中横向惯性约束,端部摩擦约束和集料对混凝土动态压缩性能影响的首次系统实验研究。讨论了有关因素对动态增加因子(DIF)的影响。本研究中的实验数据验证了郝和郝[36]中提出的DIF关系。结果证实了之前基于数值模拟所做的观察,即横向惯性约束效应取决于样品直径和应变率。骨料的大小和体积对DIF的影响很大,在实验或数值研究中不能忽略骨料。这也证实了端部摩擦约束作用对样品的几何形状和应变速率敏感。郝等人提出的方程。文献[40]基于数值模拟,令人满意地消除了在冲击试验中获得的混凝土材料强度对DIF的摩擦约束作用。

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