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A study of tensile damage and attenuation effect of perforated concrete defense layer on stress waves

机译:多孔混凝土防御层对应力波的拉伸损伤和衰减效应研究

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摘要

Civil defense shelters are often constructed beneath the ground to provide protection against blast loadings. Concrete is widely used as the material for the defense layer of the shelters. This paper adopts a continuum damage model of brittle media to numerically investigate the dynamic fracture and attenuation effect of perforated concrete defense layer on stress waves from planar charge. The model includes damage accumulation and loading rate-dependence, and has been succinctly implemented into the dynamic finite element code, LS-DYNA, via its user defined subroutine. The numerical results reveal that the adopted model can well predict the tensile damage owing to the reflection of pressure waves from cavities and free boundaries. Again, the elastoplastic properties of concrete play significant roles in the stress-wave attenuation and the peak values of hydrostatic pressure beneath a circular cavity are largely reduced. One empirical formula is finally proposed to relate the decay factor of peak hydrostatic pressure to the cavity dimensions and relative position.
机译:民防庇护所通常建在地下,以防止爆炸。混凝土被广泛用作避难所防御层的材料。本文采用脆性介质的连续损伤模型,数值研究了多孔混凝土防御层对平面电荷的应力波的动态断裂和衰减作用。该模型包括损伤累积和载荷率相关性,并且已通过其用户定义的子例程简洁地实现到动态有限元代码LS-DYNA中。数值结果表明,所采用的模型可以很好地预测由于空腔和自由边界引起的压力波反射而引起的拉伸损伤。同样,混凝土的弹塑性特性在应力波衰减中起着重要作用,并且圆形空腔下的静水压力峰值大大降低。最后提出了一个经验公式,将峰值静水压的衰减因子与腔体尺寸和相对位置联系起来。

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