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Behavior of steel fibers reinforced self-stressing and self-compacting concrete-filled steel tube subjected to bending

机译:钢纤维增强自应力自密实钢管的弯曲性能

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This paper described an experimental work for steel fibers reinforced self-stressing and self-compacting concrete-filled steel tube (FSSCFST) specimens subjected to bending. The study aimed to evaluate the effect of self-stress and steel fibers on the behavior of self-compacting concrete filled steel tube (SCCFST) specimens. Twenty-seven SCCFST specimens reinforced with steel fibers, self-stress or their couple were tested under bending. The variables considered in the test were self-stress, thickness of steel tube, concrete strength and steel fiber volume percentage. Experimental results showed that the FSSCFST specimens behaved in a relatively ductile manner, but steel fibers and self-stress failed to change the failure mode of CFST specimens. Self-stress can slightly increase the flexural capacity and lead to a higher flexural rigidity. Steel fibers can lengthen the elastic stage and improve the flexural capacity of FSSCFST specimens. This beneficial effect of steel fibers decreased with the increasing of steel tube thickness. A formula was proposed to predict the flexural capacity of FSSCFST specimens, and the comparison between predictions and experiment results proved the accuracy of the formula. (C) 2017 Published by Elsevier Ltd.
机译:本文描述了钢纤维增强自应力自密实钢管(FSSCFST)弯曲试样的实验工作。该研究旨在评估自应力和钢纤维对自密实钢管混凝土(SCCFST)标本行为的影响。在弯曲下测试了27个用钢纤维,自应力或其耦合增强的SCCFST标本。试验中考虑的变量是自应力,钢管厚度,混凝土强度和钢纤维体积百分比。实验结果表明,FSSCFST试件表现出相对延性,但是钢纤维和自应力未能改变CFST试件的破坏模式。自应力会稍微增加抗弯能力,并导致较高的抗弯刚度。钢纤维可以延长弹性阶段并提高FSSCFST标本的抗弯能力。钢纤维的这种有益效果随着钢管厚度的增加而降低。提出了一个公式来预测FSSCFST试件的抗弯能力,并将预测结果与实验结果进行比较证明了该公式的正确性。 (C)2017由Elsevier Ltd.发布

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