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Numerical simulation of reinforced concrete structures under impact loading

机译:冲击荷载下钢筋混凝土结构的数值模拟

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摘要

This study presents the performance of a combined finite-discrete element method for prediction of the structural response of reinforced concrete beams under impact loading. A combination of finite and discrete element methods enables the modelling of the concrete and the reinforcement before the concrete cracking, as well as a discontinuous nature of the concrete caused by fracture and fragmentation under high impact loading. Discretization of the concrete with triangular finite elements is coupled with one-dimensional reinforcing bars embedded inside the concrete finite elements. The cracking in the concrete activates the joint elements used to simulate the non-linear behavior of both concrete and reinforcement. Numerical analysis based on experimental test data has been carried out to simulate the main features of the reinforced concrete beams impacted by free-falling drop-weights. A high level of accuracy was demonstrated in various comparisons between the experimental tests and the analysis results, including peak displacement, crack pattern, damage level and failure modes of reinforced concrete beams.
机译:这项研究提出了组合有限元方法的性能预测在冲击荷载下钢筋混凝土梁的结构响应。有限元法和离散元法的结合使得能够在混凝土开裂之前对混凝土和钢筋进行建模,以及在高冲击载荷下由断裂和破碎引起的混凝土不连续性。具有三角形有限元的混凝土离散化与嵌入混凝土有限元内部的一维钢筋相结合。混凝土中的裂纹激活了用于模拟混凝土和钢筋非线性行为的接缝单元。进行了基于实验测试数据的数值分析,以模拟受自由落体重量影响的钢筋混凝土梁的主要特征。实验测试与分析结果之间的各种比较都显示出较高的准确性,包括峰值位移,裂缝模式,损伤程度和钢筋混凝土梁的破坏模式。

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