材料科学
延展性(地球科学)
骨料(复合)
消散
复合材料
磁滞
承载力
结构工程
管(容器)
本构方程
方位(导航)
有限元法
蠕动
工程类
物理
地图学
量子力学
热力学
地理
作者
Zhongqiu Fu,Bohai Ji,Dongyang Wu,Zhenpeng Yu
出处
期刊:Steel and Composite Structures
[Technopress]
日期:2019-01-01
卷期号:32 (6): 717-729
被引量:7
标识
DOI:10.12989/scs.2019.32.6.717
摘要
A horizontal cyclic test was carried out to study the seismic performance of lightweight aggregate concrete filled steel tube (LACFST). The constitutive and hysteretic model of core lightweight aggregate concrete (LAC) was proposed for finite element simulation. The stress and strain changes of the steel tube and concrete filled inside were measured in the experiment, and the failure mode, hysteresis curve, skeleton curve, and strain curve of the test specimens were obtained. The influence of axial compression ratio, diameter-thickness ratio and material strength were analysed based on finite element model. The results show that the hysteresis curve of LACFST indicated favourable ductility, energy dissipation, and seismic performance. The LACFST failed when the concrete in the bottom first crushed and the steel tube then bulged, thus axial force imposed by prestressing was proved to be feasible. The proposed constitutive model and hysteretic model of LAC under the constraint of its steel tube was reliable. The bearing capacity and ductility of the specimen increase significantly with increasing thickness of the steel tube. The bearing capacity of the member improves while the ductility and energy dissipation performance slightly decreased with the increasing strength of the steel and concrete.
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