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Axial behavior of circular CFFT long columns internally reinforced with steel or carbon and glass FRP longitudinal bars

机译:圆形CFFT长柱的轴向行为,内部用钢或碳纤维和玻璃钢FRP纵筋加固

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This paper presents the test results of an experimental study aimed at investigating the behavior of concrete filled fiber-reinforced-polymer (FRP) tube (CFFT) long columns internally reinforced with longitudinal steel or carbon and glass FRP bars tested under axial compression loading. A total of ten reinforced concrete (RC) and CFFT columns measuring 1900-mm in height and 213-mm in diameter were constructed and tested until failure. The test parameters were: (1) internal reinforcement type and amount; (2) GFRP tube thicknesses; and (3) nature of axial loading (i.e. monotonic and cyclic). The experimental results showed that the GFRP-reinforced CFFT columns had comparable ultimate axial strength and strain capacities compare to their counterparts reinforced with steel bars. As expected, an increase in the FRP tube thickness (or stiffness) resulted in an increase in the strength and strain enhancement ratios. The results also indicated that the residual plastic strain of FRP-reinforced CFFT columns is linearly related to the envelope unloading strain, and this relationship is not influenced significantly by the FRP confinement level but strongly influenced by the internal reinforcement amount and type, particularly when the envelope unloading strain (> 0.0035). The presented study showed the applicability of exclusively reinforcing the CFFT columns with FRP bars and subjected to axial compression load. However, further experimental investigations on the axial cyclic behavior of Glut 1 columns internally reinforced with FRP bars are required to establish such key relationships.
机译:本文介绍了一项实验研究的测试结果,旨在研究内部填充有纵向钢或碳纤维和玻璃纤维FRP筋的混凝土填充纤维增强聚合物(FRP)长管柱(CFFT)的性能,并在轴向压缩载荷下进行了测试。总共建造了十个钢筋混凝土(RC)和CFFT柱,测量它们的高度为1900mm,直径为213mm,直到失效。试验参数为:(1)内部钢筋的种类和数量; (2)GFRP管的厚度; (3)轴向载荷的性质(即单调和周期性)。实验结果表明,GFRP增强的CFFT柱与用钢筋增强的CFFT柱具有相当的极限轴向强度和应变能力。正如预期的那样,FRP管厚度(或刚度)的增加导致强度和应变增强比的增加。结果还表明,FRP加固的CFFT柱的残余塑性应变与包络线的卸载应变成线性关系,这种关系不受FRP约束水平的影响很大,而受内部加固量和类型的影响很大,尤其是当包络线卸载应变(> 0.0035)。提出的研究表明,仅用FRP筋加固CFFT柱并承受轴向压缩载荷的适用性。但是,需要对内部用FRP筋加固的Glut 1柱的轴向循环行为进行进一步的实验研究,以建立这种关键关系。

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