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Seismic performance of square, thin-walled steel tube/bamboo plywood composite hollow columns with binding bars

机译:带约束杆的方形薄壁钢管/竹胶合板复合空心柱的抗震性能

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A thin-walled steel tube/bamboo plywood composite hollow column with binding bars (SBCCB) was developed using transverse binding bars to reinforce a thin-walled steel tube and bamboo plywood composite hollow column. Low reversed cyclic loading tests were performed on 9 SBCCB specimens to observe the damage process and morphology in the SBCCBs. The effects of the slenderness ratio, the net cross-sectional area of the bamboo plywood, the assembly patterns of the cross sections, and the binding bars on the stress and seismic performance were investigated. The results show that the main failure modes of the SBCCBs were cracking of different adhesion interfaces at the base of the column and fracturing of the bamboo plywood. The cross-sectional assembly pattern has a significant effect on the failure modes; increasing the cross-sectional area and the slenderness ratio of the composite column will dramatically improve the seismic performance of the SBCCBs. SBCCBs have excellent elastic deformation and seismic energy consumption characteristics. The binding bars ensure the integrity of the specimen and inhibit the failure of the adhesion interface at the base of the column. Finally, based on the measurement of the axial pressure and the stress-strain curve within elastic range of the composite columns, a simplified mechanical model and a calculation method for bearing capacity was formulated. The calculation values of bearing capacity agree well with the experimental ones, and calculation method can be used to provide guidance for engineering applications of a SBCCB. (C) 2016 Elsevier Ltd. All rights reserved.
机译:利用横向绑杆增强了薄壁钢管和竹胶合板复合空心柱,开发了带绑杆的薄壁钢管/竹胶合板复合空心柱(SBCCB)。在9个SBCCB样品上进行了低反向循环载荷测试,以观察SBCCB的破坏过程和形态。研究了细长比,竹胶合板的净截面积,横断面的组装方式和绑扎条对应力和抗震性能的影响。结果表明,SBCCBs的主要破坏方式是柱基底部不同粘合界面的开裂和竹胶合板的断裂。横截面组装方式对失效模式有重大影响。增加复合材料柱的横截面积和细长比将显着改善SBCCB的抗震性能。 SBCCB具有出色的弹性变形和地震能耗特性。结合杆确保了样品的完整性,并抑制了色谱柱底部的粘合界面失效。最后,基于对组合柱弹性范围内的轴向压力和应力-应变曲线的测量,建立了简化的力学模型和承载力计算方法。承载力的计算值与实验值吻合较好,可以为SBCCB的工程应用提供指导。 (C)2016 Elsevier Ltd.保留所有权利。

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