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Modelling the dynamic response and failure modes of reinforced concrete structures subjected to blast and impact loading

机译:对爆炸和冲击载荷作用下钢筋混凝土结构的动力响应和破坏模式进行建模

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摘要

Responding to the threat of terrorist attaeks around the world, numerous studies have been conducted to search lor new methods of vulnerability assessment and protective technologies for critical infrastructure under extreme bomb blasts or high velocity impacts. In this paper, a two-dimensional behavioral rate dependent lattice model (RDLM) capable of analyzing reinforced concrete members subjected to blast and impact loading is presented. The model inherently takes into account several major influencing factors: the progressive cracking of concrete in tension, the inelastic response in compression, the yielding of reinforcing steel, and strain rate sensitivity of both concrete and steel. A computer code using the explicit algorithm was developed based on the proposed lattice model. The explicit code along with the proposed numerical model was validated using experimental test results from the Woomera blast trial.
机译:为了应对全世界恐怖分子的威胁,已经进行了许多研究,以寻找在极端炸弹爆炸或高速撞击下的关键基础设施的脆弱性评估和防护技术的新方法。本文提出了一种二维行为速率依赖格模型(RDLM),该模型能够分析钢筋混凝土构件的爆炸和冲击载荷。该模型固有地考虑了几个主要影响因素:混凝土在拉伸中的逐渐开裂,压缩中的无弹性响应,钢筋的屈服以及混凝土和钢的应变率敏感性。基于提出的网格模型,开发了使用显式算法的计算机代码。使用Woomera爆炸试验的实验测试结果验证了明确的代码以及建议的数值模型。

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