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Axial compressive behavior of concrete-filled FRP-steel wire reinforced thermoplastics pipe hybrid columns

机译:混凝土纤维钢丝加固热塑性管杂交柱轴向压缩行为

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摘要

This paper presents investigations on a new column form, namely, concrete-filled fiber-reinforced polymer-steel wire reinforced thermoplastics pipe (FRP-SRTP) columns (CFFSCs) which consist of a SRTP tube with an outer FRP confinement system and concrete filled in the core area. A series of axial compression tests were performed on CFFSCs, and parameters including the number of FRP layers, the FRP fiber type and the clear spacing of the FRP rings were investigated. The test results demonstrate that the concrete-filled SRTP tube columns have an excellent ductility and the outer FRP confinement system provides efficient confinement to CFFSCs. The dilation behavior of the concrete in CFFSCs with polyethylene terephthalate FRP is different to that of the concrete in CFFSCs with carbon FRP. Four existing design-oriented models are adopted to generate the ultimate axial stresses and their corresponding strains of concrete in CFFSCs. By comparing the test results and the theoretical predictions, it is found that the existing models provides inaccurate predictions for CFFSCs. The new column form is particularly suitable as a form of standing support for underground mines, where a novel supporting system requires both a large deformation capacity and a good structural integrity.
机译:本文介绍了新柱形形式的调查,即混凝土填充的纤维增强聚合物 - 钢材加强热塑性塑料管(FRP-SRTP)柱(CFFSCS),其由SRTP管组成,具有外部FRP限制系统和混凝土填充核心区域。对CFFSC进行了一系列轴向压缩试验,并研究了包括FRP层数,FRP光纤型和FRP环的清晰间距的参数。测试结果表明,填充混凝土的SRTP管柱具有出色的延展性,外部FRP限制系统为CFFSC提供有效的限制。用聚对苯二甲酸乙二醇酯FRP的CFFSCs中混凝土的扩张行为与CFFSCS中的混凝土与碳FRP的混凝土不同。采用四种现有的设计型号来产生CFFSCS中的最终轴向应力及其相应的混凝土菌株。通过比较测试结果和理论预测,发现现有模型为CFFSC提供了不准确的预测。新的柱形表格特别适合作为地下矿山的站立支撑形式,其中新颖的支撑系统需要大的变形容量和良好的结构完整性。

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