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Dynamic Response and Shear Demand of Reinforced Concrete Beams Subjected to Impact Loading

机译:钢筋混凝土梁受冲击载荷的动态响应和剪切需求

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摘要

Reinforced concrete (RC) beams under the impact loading are typically prone to suffer shear failure in the local response phase. In order to enhance the understanding of the mechanical behavior of the RC beams, their dynamic response and shear demand are numerically investigated in this paper. A 3D finite-element model is developed and validated against the experimental data available in the literature. Taking advantage of the above calibrated numerical model, an intensive parametric study is performed to identify the effect of different factors including the impact velocity, impact mass and beam span-to-depth ratio on the impact response of the RC beams. It is found that, due to the inertial effect, a linear relationship exists between the maximum reverse support force and the peak impact force, while negative bending moments also appear in the shear span. In addition, the local response of the RC beams can be divided into a first impact stage and a separation stage. A shear plug is likely to be formed near the impact point at the first impact stage and a shear failure may be triggered near the support by large support forces. Based on the simulation results, simplified methods are proposed for predicting the shear demand for the two failure modes, whereas physical models are also established to illustrate the resistance mechanism of the RC beams at the peak impact force. By comparing with the results of the parametric study, it is concluded that the shear demand of the RC beams under the impact loading can be predicted by the proposed empirical formulas with reasonable accuracy.
机译:冲击载荷下的钢筋混凝土(RC)梁通常容易发生在局部响应阶段的剪切失效。为了增强对RC光束的力学行为的理解,本文在数值上对它们的动态响应和剪切需求进行了数值研究。针对文献中可用的实验数据开发并验证了3D有限元模型。利用上述校准数值模型,进行了一项强化参数研究,以确定不同因素的效果,包括冲击速度,冲击质量和光束跨度与深度比率对RC梁的冲击响应。结果发现,由于惯性效果,在最大反向支撑力和峰值冲击力之间存在线性关系,而负弯矩也出现在剪切跨度中。另外,RC光束的局部响应可以被分成第一冲击阶段和分离阶段。在第一冲击阶段的冲击点附近可能形成剪切插头,并且可以通过大支撑力触发剪切失效。基于仿真结果,提出了用于预测两种故障模式的剪切需求的简化方法,而还建立了物理模型以说明峰值冲击力处的RC光束的电阻机构。通过与参数研究的结果进行比较,得出结论是,建议的经验公式具有合理的准确性,可以预测RC光束下的RC光束的剪切需求。

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