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首页> 外文期刊>Journal of Constructional Steel Research >Cyclic behavior of high-strength concrete shear walls with high-strength reinforcements and boundary CFST columns
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Cyclic behavior of high-strength concrete shear walls with high-strength reinforcements and boundary CFST columns

机译:高强度混凝土剪力墙具有高强度增强和边界CFST柱的循环行为

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摘要

The reinforced concrete shear wall with boundary concrete-filled steel tube (CFST) columns features high lateral strength and seismic ductility. Combining the use of high-strength concrete and high-strength reinforcements for this kind of composite shear wall has attracted widespread attention recently. To investigate the cyclic performance of high-strength concrete shear walls with high-strength steel bars and boundary CFST columns, five specimens with varying concrete strengths, steel tube types, steel fiber ratios, and strengthening measures using bottom steel plates were tested under constant axial loading combined with lateral cyclic loading. The test failure modes and the measured components of the flexural and shear displacements indicated flexural-dominated failure patterns for all the shear walls, where the shear connectors ensured a reliable connection between the boundary CFST columns and the wall web. Although the high-strength concrete and high strength reinforcements functioned well together, the reasonable material strength matching between concrete and steel bars and the stiffness matching between wall web and boundary elements should also be considered in design. The incorporated steel fibers alleviated damage to the wall web and enhanced the wall's flexural deformation capacity. The addition of bottom double-skin steel plates to both sides of the wall web effectively increased the lateral strength, deformability, and reparability of a composite wall made of non-fiber-reinforced concrete. An analytical model was developed to evaluate the load-bearing capacity and verified by comparing the model predictions against test results.(c) 2021 Published by Elsevier Ltd.
机译:具有边界混凝土填充钢管(CFST)柱的钢筋混凝土剪力墙具有高侧侧强度和地震延性。结合使用高强度混凝土和高强度增强件这种复合剪力墙最近引起了广泛的关注。为了研究高强度混凝土剪力墙的循环性能和高强度钢筋和边界CFST柱,在恒定轴向下测试五个具有不同混凝土强度,钢管型,钢纤维比和使用底部钢板的强化措施的五个标本加载结合侧循环载荷。弯曲和剪切位移的测试失败模式和测量部件指示所有剪切壁的弯曲主导的故障模式,其中剪切连接器确保边界CFST列和墙网之间的可靠连接。尽管高强度混凝土和高强度增强功能良好,但在设计中也应考虑混凝土和钢筋之间的合理材料强度和墙网与边界元件之间的刚度匹配。掺入的钢纤维缓解了墙网的损坏,并增强了墙壁的弯曲变形能力。将底部双皮钢板加入到壁纸的两侧有效地增加了由非纤维增强混凝土制成的复合壁的横向强度,可变形性和可重复性。开发了一种分析模型来评估承载能力,并通过比较模型预测对测试结果进行比较。(c)2021由elestvier有限公司发布

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