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Shear performance of steel fibers reinforced self-confinement and self-compacting concrete-filled steel tube stub columns

机译:钢纤维增强自密实钢管混凝土短柱的抗剪性能

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This paper described an experimental work for thirty-eight steel fibers reinforced self-confinement and self-compacting concrete-filled steel tube (FSSCFST) stub columns under shear load. The variables considered in the test were self-stress, thickness of steel tube, concrete strength, axial compression ratio, shear span-to-depth ratio and steel fibers volume percentage. Failure mode, shear capacity, load-deflection curve and load-strain respond were investigated. Experimental results showed that the failure mode of FSSCFST stub columns depended on the shear span-to-depth ratio (m). When m < 0.5, the specimens failed in shear; when m >= 0.5, the specimens failed in flexure. Self-stress improved the rigidity and shear capacity, but decreased the deformability of FSSCFST stub columns. Steel fiber improved the shear resistance and ductility of concrete through bridging the plastic cracks near the shear failure plane. This beneficial effect from steel fibers lengthened the stage of elasticity and improved the shear strength of CFST specimens. Finally, formulas were proposed to predict the shear capacity of FSSCFST, and the predictions agreed well with the test results from this study and the literatures. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文描述了38根钢纤维增强自约束和自密实钢管(FSSCFST)短柱在剪切荷载下的试验工作。试验中考虑的变量是自应力,钢管厚度,混凝土强度,轴向压缩比,剪切跨度-深度比和钢纤维体积百分比。研究了破坏模式,剪切能力,荷载-挠度曲线和荷载-应变响应。实验结果表明,FSSCFST短柱的破坏模式取决于剪切跨度与深度之比(m)。当m <0.5时,试样剪切失败;当m> = 0.5时,试样弯曲失败。自应力提高了刚度和剪切能力,但降低了FSSCFST短柱的变形能力。钢纤维通过弥合剪切破坏面附近的塑性裂缝来提高混凝土的抗剪切性和延展性。钢纤维的这种有益效果延长了弹性阶段并提高了CFST试样的剪切强度。最后,提出了预测FSSCFST剪切强度的公式,该预测与本研究和文献的测试结果吻合良好。 (C)2017 Elsevier Ltd.保留所有权利。

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