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Numerical simulation of one-way reinforced concrete slabs subjected to blast loadings

机译:用于爆破载荷的单向钢筋混凝土板的数值模拟

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The damage and failure of reinforced concrete (RC) slabs under blast loadings may cause significant hazards for frame systems even progressive collapse of whole structures. The numerical simulation of one-way RC slabs using the finite element explicit code LS-DYNA to estimate the dynamic response and failure mode of one-way RC slabs. Blast loadings are imposed on the top surface of slabs using a blast model based on conwep algorithm. Concrete was modeled using a concrete damage constitutive model considering strain rate effect, and reinforcement was modeled using a elastoplastic material type with kinematic hardening and strain rate effect. The numerical model is introduced in details and adopted to simulate the dynamic responses of RC slabs in reference test. The numerical model can match well with the test data, and thus the proposed numerical model can be considered as a valuable tool in assessing the deformation or failure mechanism and predicting the dynamic responses of one-way RC slabs subjected to blast loadings.
机译:钢筋混凝土(RC)板坯在爆破载体下的损坏和失效可能对帧系统造成显着的危害,甚至逐渐崩溃的整个结构。使用有限元明细码LS-DYNA的单向RC板的数值模拟来估计单向RC板的动态响应和故障模式。使用基于COWEP算法的爆炸模型,爆炸载荷施加在板坯的顶表面上。考虑应变率效应的混凝土损伤本构模型建模了混凝土,使用弹性材料型模拟了具有运动硬化和应变率效应的增强。详细介绍了数值模型,并采用了模拟RC板在参考测试中的动态响应。数值模型可以与测试数据相匹配,因此所提出的数值模型可以被认为是评估变形或故障机制的有价值的工具,并预测经受喷射载荷的单向RC板的动态响应。

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