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Seismic Behavior of FRP-High-Strength Concrete-Steel Double-Skin Tubular Columns

机译:FRP-高强度混凝土-钢管双层管柱的抗震性能

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This paper reports on an experimental study on the seismic behavior of fiber-reinforced polymer (FRP)-concrete-steel double-skin tubular (DST) columns. Nine DST and one concrete-filled FRP-tube (CFFT) columns that were made of high-strength concrete were tested under constant axial compression and reversed-cyclic lateral loading. The main parameters of the experimental study were axial load level, amount and type of FRP confinement, concrete strength, sectional shape and thickness of the inner steel tube, and provision (or absence) of a concrete filling inside the steel tube. Of primary importance, the results indicate that DST columns are capable of developing very high inelastic deformation capacities under simulated seismic loading. The results also indicate that the presence of a concrete filling inside the inner steel tube significantly and positively influences the seismic behavior of DST columns. It is found that the performance of the void-filled DST column is superior to that of a companion CFFT column having identical geometric and material properties apart from the main internal steel reinforcing bars. These early observations suggest that DST columns may provide an attractive alternative to CFFT columns in the construction of new earthquake-resistant columns. No detrimental effect of the increased concrete strength on the displacement capacity of the DST columns is observed, provided that the amount of confinement is increased proportionally with the concrete strength. The influence of the cross-sectional geometry of the inner steel tube is found to be significant, whereas the thickness of the steel tube is found to have only a minor influence on the behavior of DST columns. It is observed that the FRP-tube material has some influence on the lateral displacement capacity of DST columns, with the specimens confined by FRP tubes manufactured using fibers with higher ultimate tensile strains developing slightly higher displacement capacities. Examination of the test results has led to a number of significant conclusions with regard to the influence of the important column parameters on the performance of DST columns. These results are presented together with a discussion of the influence of the main parameters on the seismic behavior of DST columns.
机译:本文报道了纤维增强聚合物(FRP)-混凝土-钢双层蒙皮管柱(DST)的抗震性能的实验研究。在恒定的轴向压缩力和反向循环侧向荷载下,测试了九根DST和一根由高强度混凝土制成的FRP管(CFFT)。实验研究的主要参数是轴向载荷水平,FRP限制的数量和类型,混凝土强度,内钢管的截面形状和厚度以及钢管内部是否填充混凝土。最重要的是,结果表明DST柱在模拟地震荷载下能够产生非常高的非弹性变形能力。结果还表明,钢管内部填充的混凝土显着并积极影响了DST柱的抗震性能。已发现,空隙填充DST色谱柱的性能优于具有相同几何和材料特性(主要内部钢筋除外)的配套CFFT色谱柱的性能。这些早期的观察结果表明,DST柱在构造新的抗震柱方面可以提供比CFFT柱更有吸引力的选择。只要限制量随混凝土强度成比例增加,就不会观察到混凝土强度增加对DST柱位移能力的有害影响。发现内钢管的横截面几何形状的影响很大,而发现钢管的厚度仅对DST柱的性能产生很小的影响。可以观察到,FRP管材料对DST柱的横向位移能力有一些影响,而标本受FRP管的限制,而FRP管是使用具有较高极限拉伸应变的纤维制造的,其位移能力略高。关于重要色谱柱参数对DST色谱柱性能的影响,测试结果的检验得出了许多重要结论。给出了这些结果,并讨论了主要参数对DST柱抗震性能的影响。

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