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Performance of concrete-encased CFST subjected to low-velocity impact: shear resistance analysis

机译:经受低速冲击的混凝土CFST的性能:剪切电阻分析

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摘要

The performance of concrete-encased concrete-filled steel tube (concrete-encased CFST) subjected to low-velocity impact is investigated through experimental and numerical studies in this paper. A total of 40 concrete-encased CFST specimens, 20 square and 20 circular ones, are tested under a drop hammer apparatus. It shows that while the outer RC components have a shear-dominated failure mode, the core CFST deforms in a flexural pattern. The influence of tested parameters on the impact force and midspan deflection of the specimens is summarized. A finite element analysis (FEA) model is then established to investigate the shear mechanism of concrete-encased CFST under impact. A comparative study between a concrete-encased CFST member and an RC member shows that the core CFST component could effectively mitigate the shear failure of the outer RC section under impact due to its high shear resistance; meanwhile, the outer RC component could well protect the core CFST and reduce its flexural deformation. Such composite effects make the concrete-encased CFST a desirable impact-resisting structure. Subsequently, a parametric study on the impact velocity shows that the debonding between outer RC and core concrete can be more prominent for the impact with a relatively higher velocity, and the use of shear studs is suggested for members under such circumstances.
机译:通过本文的实验和数值研究,研究了对低速冲击进行低速冲击的混凝土填充钢管(混凝土封装CFST)的性能。在落锤装置下,共测试了40个混凝土CFST标本,20平方和20个圆形的CFST标本。它表明,虽然外部RC部件具有剪切主导的故障模式,但芯CFST以弯曲模式变形。总结了测试参数对样本的冲击力和中跨偏转的影响。然后建立有限元分析(FEA)模型以研究冲击下混凝土CFST的剪切机理。混凝土的CFST构件和RC构件之间的比较研究表明,由于其高剪切电阻,芯CFST组分可以有效地减轻外部RC部分的剪切失效;同时,外部RC组件可以很好地保护核心CFST并降低其弯曲变形。这种复合效果使混凝土封装的CFST一种理想的抗冲击结构。随后,对冲击速度的参数研究表明,外部RC和芯混凝土之间的剥离对于具有相对较高的速度的影响,可以更加突出,并且在这种情况下建议剪切螺柱的使用。

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