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首页> 外文期刊>Journal of Composites for Construction >Behavior and Modeling of Ultra-High Performance Concrete-Filled FRP Tubes Under Cyclic Axial Compression
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Behavior and Modeling of Ultra-High Performance Concrete-Filled FRP Tubes Under Cyclic Axial Compression

机译:循环轴压下超高性能混凝土填充FRP管的行为与建模

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摘要

This paper presents an experimental investigation and a stress-strain model for ultra-high performance concrete (UHPC)-filled fiber reinforced polymer (FRP) tubes under cyclic axial compression. Test results from 12 cyclically loaded and 18 monotonically loaded cylindrical specimens with different tube thicknesses, curing regimes, and steel fibers are presented. The influence of the tested variables on the envelope curve, plastic strain, and stress deterioration was clarified to establish a theoretical stress-strain model. Through a comprehensive assessment of well-known cyclic stress-strain model developed for FRP-confined conventional concrete, a new model for FRP-confined UHPC under cyclic axial compression is proposed based on a more rational consideration of the key characteristics of FRP-confined UHPC. Both the monotonic envelope response and the cyclic response showed good agreement between the analytic predictions based on the proposed model and the test results, confirming the capability of the proposed model to predict the cyclic axial behavior of FRP-confined UHPC.
机译:本文介绍了循环轴向压缩下超高性能混凝土(UHPC)填充纤维增强聚合物(FRP)管的实验研究和应力 - 应变模型。提出了来自12个循环装载的和18个具有不同管厚度,固化制度和钢纤维的单调装载的圆柱形样品的测试结果。测试变量对包络曲线,塑料应变和应力劣化的影响,以建立理论应力 - 应变模型。通过对为FRP限制常规混凝土开发的众所周知的循环应力 - 应变模型进行全面评估,提出了一种新的循环轴向压缩下的FRP限制UHPC模型,基于更合理的思考FRP限制UHPC的关键特性。单调包络响应和循环反应均基于所提出的模型和测试结果显示分析预测之间的良好一致性,确认所提出的模型预测FRP限制UHPC的循环轴向行为的能力。

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