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Bond slip modelling and its effect on numerical analysis of blast-induced responses of RC columns

机译:粘结滑移模型及其对钢筋混凝土爆炸冲击响应数值分析的影响

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摘要

Reinforced concrete (RC) structures consist of two different materials: concrete and steel bar. The stress transfer behaviour between the two materials through bond plays an important role in the load-carrying capacity of RC structures, especially when they subject to lateral load such as blast and seismic load. Therefore, bond and slip between concrete and reinforcement bar will affect the response of RC structures under such loads. However, in most numerical analyses of blast-induced structural responses, the perfect bond between concrete and steel bar is often assumed. The main reason is that it is very difficult to model bond slip in the commercial finite element software, especially in hydrodynamic codes. In the present study, a one-dimensional slide line contact model in LS-DYNA for modeling sliding of rebar along a string of concrete nodes is creatively used to model the bond slip between concrete and steel bars in RC structures. In order to model the bond slip accurately, a new approach to define the parameters of the one-dimensional slide line model from common pullout test data is proposed. Reliability and accuracy of the proposed approach and the one-dimensional slide line in modelling the bond slip between concrete and steel bar are demonstrated through comparison of numerical results and experimental data. A case study is then carried out to investigate the bond slip effect on numerical analysis of blast-induced responses of a RC column. Parametric studies are also conducted to investigate the effect of bond shear modulus, maximum elastic slip strain, and damage curve exponential coefficient on blast-induced response of RC columns. Finally, recommendations are given for modelling the bond slip in numerical analysis of blast-induced responses of RC columns.
机译:钢筋混凝土(RC)结构由两种不同的材料组成:混凝土和钢筋。两种材料之间通过粘结的应力传递行为在RC结构的承载能力中起着重要作用,尤其是当它们承受诸如爆炸和地震荷载的横向荷载时。因此,混凝土与钢筋之间的粘结和滑移将影响钢筋混凝土结构在这种载荷下的响应。但是,在大多数爆炸引起的结构响应的数值分析中,通常假定混凝土和钢筋之间具有完美的结合力。主要原因是很难在商用有限元软件中对粘结滑移进行建模,尤其是在流体力学代码中。在本研究中,LS-DYNA中的一维滑移线接触模型用于建模钢筋沿一串混凝土节点的滑动,被创造性地用于建模RC结构中混凝土与钢筋之间的粘结滑移。为了准确地建模粘结滑移,提出了一种新的方法,该方法可以从常见的拉拔测试数据中定义一维滑移线模型的参数。通过比较数值结果和实验数据,证明了所提方法和一维滑移线用于建模混凝土与钢筋粘结滑移的可靠性和准确性。然后进行了案例研究,研究了粘结滑移效应对钢筋混凝土柱爆炸冲击响应的数值分析。还进行了参数研究,以研究粘结剪切模量,最大弹性滑移应变和损伤曲线指数系数对爆炸引起的RC柱响应的影响。最后,提出了在爆炸引起的RC柱响应数值分析中对粘结滑移进行建模的建议。

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