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Numerical Simulation of Response of SRC Columns Subjected to Blast Loading

机译:爆炸荷载作用下SRC柱响应的数值模拟

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摘要

The dynamic characteristics and failure modes of steel reinforced concrete (SRC) columns subjected to blast loading are complicated because of the transient stress wave in the SRC columns and the interaction between steel and concrete. This paper presents a numerical simulation of the response of SRC columns subjected to blast loading using hydrocode LS-DYNA. In the numerical model, a sophisticate concrete material model (the Concrete Damage Model) is employed with consideration of the strain rate effect and the damage accumulation. An erosion technique is adopted to model the spalling process of concrete. The possible failure modes of SRC columns are evaluated. It is observed that the failure of SRC columns subjected to blast load can generally be classified into three modes, namely, a direct failure in concrete body due to the stress wave, a transverse shear failure near the support sections due to the high shear force, and a flexural failure pertaining to large local and global deformation of the reinforcing steel.
机译:由于SRC柱中的瞬态应力波以及钢与混凝土之间的相互作用,承受爆炸荷载的钢筋混凝土(SRC)柱的动力特性和破坏模式非常复杂。本文利用水力法LS-DYNA给出了爆炸荷载作用下SRC柱响应的数值模拟。在数值模型中,考虑到应变率效应和损伤累积,采用了复杂的混凝土材料模型(混凝土损伤模型)。采用侵蚀技术对混凝土剥落过程进行建模。评估了SRC柱的可能失效模式。可以看出,爆炸荷载作用下的SRC柱的破坏一般可分为三种模式,即应力波引起的混凝土主体的直接破坏,​​高剪切力引起的支撑段附近的横向剪切破坏,以及与钢筋局部和整体大变形有关的弯曲破坏。

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