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Seismic tests and numerical investigation of blind-bolted moment CFST frames infilled with thin-walled SPSWs

机译:薄壁SPSW填充的单边弯矩CFST框架的抗震试验和数值研究

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摘要

This paper aims to investigate the seismic response of blind-bolted moment concrete-filled steel tubular (CFST) frames infilled with thin-walled steel plate shear walls (SPSWs). Tests of two-storey blind-bolted circular or square CFST frames with thin-walled SPSWs subjected to horizontal low-cyclic loading were performed. Macroscopic finite element (FE) models of the specimens were primarily established by fibre beam-column elements, zero-length springs, and truss elements. The numerical simulation results were verified by the experimental data. A parametric analysis was conducted to analyse the influence of the axial load level, material strength, and height-thickness ratio of the steel plate etc. on the hysteresis behaviour and energy dissipation of blind-bolted moment CFST frames with thin-walled SPSWs. In addition, the mechanics of the semi-rigid frame with SPSWs were compared with the pinned and rigid frames with SPSWs using mechanical analysis model and FE model. The experimental and analytical results show that the blind-bolted moment CFST frames with SPSWs connected to the beams only exhibit preferable hysteretic response, ductility and energy dissipation. The peak strength, initial stiffness and energy dissipation of blind-bolted moment CFST frames infilled with thin-walled SPSWs can be significantly affected by the axial load level as well as the steel plates' yield strength, height-thickness ratio, aspect ratio, and connection type.
机译:本文旨在研究装有薄壁钢板剪力墙(SPSW)的密闭矩型钢管混凝土(CFST)框架的地震响应。进行了带有薄壁SPSW的两层盲孔圆形或方形CFST框架的测试,该框架受水平低周荷载的影响。样品的宏观有限元(FE)模型主要由纤维梁柱单元,零长度弹簧和桁架单元建立。实验结果验证了数值模拟结果。进行了参数分析,分析了轴向载荷水平,材料强度以及钢板的高厚比等因素对薄壁SPSW斜推式CFST框架的滞后性能和能量耗散的影响。此外,使用机械分析模型和有限元模型,将带有SPSW的半刚性框架与带有SPSW的固定框架和刚性框架进行了比较。实验和分析结果表明,与SPSW连接到梁的盲栓力矩CFST框架仅表现出较好的滞后响应,延性和能量耗散。薄壁SPSW填充的短时弯矩CFST框架的峰值强度,初始刚度和能量耗散会受到轴向载荷水平以及钢板的屈服强度,高厚比,长宽比和连接类型。

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