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Behaviors of concrete filled square steel tubes confined by carbon fiber sheets (CFS) under compression and cyclic loads

机译:碳纤维板(CFS)约束的方钢管混凝土在压缩和循环荷载作用下的行为

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The existing CFT columns present the deterioration in confining effect after the yield of steel tube, local buckling and the deterioration in load capacity. If lateral load such as earthquake load is applied to CFT columns, strong shearing force and moment are generated at the lower part of the columns and local buckling appears at the column. In this study, axial compression test and beam-column test were conducted for existing CFT square column specimens and those reinforced with carbon fiber sheets (CFS). The variables for axial compression test were width-thickness ratio and the number of CFS layers and those for beam-column test were concrete strength and the number of CFS layers. The results of the compression test showed that local buckling was delayed and maximum load capacity improved slightly as the number of layers increased. The specimens' ductility capacity improved due to the additional confinement by carbon fiber sheets which delayed local buckling, In the beam-column test, maximum load capacity improved slightly as the number of CFS layers increased. However, ductility capacity improved greatly as the increased number of CFS layers delayed the local buckling at the lower part of the columns. It was observed that the CFT structure reinforced with carbon fiber sheets controlled the local buckling at columns and thus improved seismic performance. Consequently, it was deduced that the confinement of CFT columns by carbon fiber sheets suggested in this study would be widely used for reinforcing CFT columns.
机译:现有的CFT柱在钢管屈服,局部屈曲和承载能力下降之后,呈现出约束效果的恶化。如果将横向载荷(例如地震载荷)施加到CFT柱上,则在柱下部会产生强大的剪切力和弯矩,并且柱会出现局部屈曲。在这项研究中,对现有的CFT方柱标本和碳纤维薄板(CFS)增强的标本进行了轴向压缩试验和梁柱试验。轴向压缩试验的变量为宽度-厚度比和CFS层数,而梁柱试验的变量为混凝土强度和CFS层数。压缩试验的结果表明,随着层数的增加,局部屈曲被延迟,最大载荷能力有所改善。由于碳纤维片材的额外限制限制了样品的局部屈曲,从而提高了样品的延展性。在梁柱试验中,随着CFS层数的增加,最大承载能力略有改善。但是,随着CFS层数的增加延迟了柱下部的局部屈曲,延展性大大提高。观察到,用碳纤维片增强的CFT结构控制了立柱的局部屈曲,从而提高了抗震性能。因此,可以推断出这项研究中建议的碳纤维板对CFT柱的约束将被广泛用于增强CFT柱。

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