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Mechanical behaviour of recycled concrete filled steel tube conlumns strengthened by CFRP

机译:CFRP加固再生钢管混凝土柱的力学性能

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This paper presented an experimental research on the behavior of circular, concrete-filled solid and hollow steel stub columns with recycled aggregate concrete (RAC) and normal aggregate concrete (NAC) concentrically loaded in compression to failure. Ten specimens were tested to investigate the effects of deformability, stiffness, failure modes and the ultimate carrying capacities of the RAC and NAC columns reinforced by carbon fibre reinforced polymer (CFRP). The ratio of the external tube dimension to the wall thickness of the tube sections varied from 50 to 57 covering compact sections. The main experimental parameters included the reinforcement ratio of CFRP, the cross section of columns strengthened, the portion of the RAC used and the length of the steel tube columns. The results show that CFRP contribution the significant increase in ultimate strength and ductility of the columns strengthened. The test results also indicated that the strength of columns strengthened increased greatly by the more layers of CFRP, and the stiffness of the strengthened columns was improved more significantly than the columns strengthened by full wrapping arrangement of CFRP.
机译:本文对圆形,混凝土填充的实心和空心钢管短柱的性能进行了实验研究,其中再生骨料(RAC)和普通骨料(NAC)同心地承受压缩至破坏。测试了十个样本,以研究由碳纤维增强聚合物(CFRP)增强的RAC和NAC柱的可变形性,刚度,破坏模式和极限承载力的影响。外管尺寸与管段壁厚的比率在50到57之间,覆盖了紧凑的段。主要的实验参数包括CFRP的增强比,加固的截面,使用的RAC的比例以及钢管柱的长度。结果表明,CFRP的贡献显着增强了柱的极限强度和延展性。测试结果还表明,CFRP的层数越多,加固柱的强度就越大,与完全包裹CFRP加固的柱相比,加固柱的刚度得到了更大的提高。

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