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首页> 外文期刊>Journal of Composites for Construction >Stress-Strain Behavior of FRP-Confined Recycled Aggregate Concrete in Square Columns of Different Sizes
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Stress-Strain Behavior of FRP-Confined Recycled Aggregate Concrete in Square Columns of Different Sizes

机译:不同尺寸方形柱中FRP限制回收骨料混凝土的应力 - 应变行为

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The application of recycled aggregate concrete (RAC) has so far mainly been limited to nonstructural components because of its inferior short- and long-term performance compared with normal concrete. Encasement of RAC with a fiber-reinforced polymer (FRP) tube has been demonstrated to be an effective technique to improve both the mechanical properties and durability of RAC. A number of studies have been carried out on FRP-confined RAC in circular columns. However, only a limited number of studies have examined the behavior of FRP-confined RAC in rectangular columns, and the existing test specimens were all small-scale. Existing studies have shown that there may exist a significant behavioral difference between small- and large-scale FRP-confined rectangular concrete columns (i.e., column size effect). Against this background, a first-ever experimental study on glass FRP (GFRP)-confined square RAC columns of three different sectional widths ranging from 200 to 400 mm was conducted and the results are presented in this paper. The same FRP confinement stiffness was adopted for the columns of different sizes so that the possible column size effect could be examined. The test results showed that the size effect indeed existed in the test FRP-confined square RAC columns and the presence of recycled aggregate amplified such effect. The size effect should be considered in the design of such columns especially when the coarse aggregate replacement ratio is relatively large. The accuracies of three existing strength models for FRP-confined normal concrete in square columns were also evaluated using the test results.
机译:迄今为止,循环骨料混凝土(RAC)的应用主要是仅限于非结构部件,因为其与正常混凝土相比其较差的短期和长期性能。已经证明了用纤维增强聚合物(FRP)管的RAC被证明是改善RAC的机械性能和耐久性的有效技术。在圆柱中的FRP限制RAC上进行了许多研究。然而,只有有限数量的研究已经检查了矩形柱中FRP限制RAC的行为,并且现有的测试标本都是小规模的。现有研究表明,小型和大型FRP限制矩形混凝土柱(即列尺寸效应)之间可能存在显着的行为差异。在此背景下,对玻璃FRP(GFRP)的第一实验研究进行了三种不同截面宽度的玻璃FRP(GFRP)的正方形RAC柱,进行了从200至400mm的范围的三种不同截面宽度,并在本文中提出了结果。采用不同尺寸的柱采用相同的FRP限制刚度,从而可以检查可能的柱尺寸效果。试验结果表明,在测试FRP限制方形RAC柱中确实存在的尺寸效应以及再循环聚集体扩增的这种效果。应在这种柱的设计中考虑尺寸效应,特别是当粗骨料替换比相对较大时。使用测试结果,还评估了Square列中FRP限制正常混凝土的三种现有强度模型的精度。

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