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Improvement of Concrete Shear Wall Structures by Smart Materials
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作者 Mehdi Ghassemieh Mohammad Reza Bahaari +1 位作者 Seyed Mohyeddin Ghodratian Seyed Ali Nojoumi 《Open Journal of Civil Engineering》 2012年第3期87-95,共9页
Smart materials have found numerous applications in many areas in civil engineering recently. One class of these materials is shape memory alloy (SMA) which exhibits several unique characteristics such as superelastic... Smart materials have found numerous applications in many areas in civil engineering recently. One class of these materials is shape memory alloy (SMA) which exhibits several unique characteristics such as superelasticity and shape memory effect. Due to these characteristics, research efforts have been extended to use SMA in controlling civil structures. This paper investigates the effectiveness of SMA reinforcements in enhancing the behavior of shear walls, especially when subjected to seismic excitations. Two ordinary and coupled shear walls were introduced as reference structures and were modeled by ABAQUS software. For improving the seismic response of the shear walls, vertical SMA reinforcing bars were proposed to be implemented like conventional steel reinforcements, throughout the height of the structures and in every connecting beam in the coupled shear wall system. The one dimensional superelastic model of SMA material was implemented in the computer software using FORTRAN code. The dynamic response of the shear walls subjected to seismic loading was investigated through time history analyses under El-centro and Koyna records. The results showed that using superelastic SMA material instead of steel bars caused remarkable reduction in residual displacement for both ordinary and coupled shear walls. In addition, SMA reinforcements could significantly decrease the maximum deflection of the coupled shear wall system. 展开更多
关键词 Smart Material SHAPE MEMORY Alloy SHEAR WALL SUPERELASTICITY seismic behavio
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RC Z形截面柱抗震性能有限元模拟 被引量:2
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作者 崔钦淑 赵笑笑 《浙江工业大学学报》 CAS 北大核心 2017年第4期461-466,共6页
基于钢筋混凝土Z形截面柱抗震性能的试验结果,用ANSYS有限元软件对试验试件进行有限元非线性模拟分析.采用分离式钢筋混凝土有限元模型,混凝土单元选用SOLID 65实体单元,钢筋单元选用LINK 180杆单元.用直接建模的方式建立Z形截面柱模型... 基于钢筋混凝土Z形截面柱抗震性能的试验结果,用ANSYS有限元软件对试验试件进行有限元非线性模拟分析.采用分离式钢筋混凝土有限元模型,混凝土单元选用SOLID 65实体单元,钢筋单元选用LINK 180杆单元.用直接建模的方式建立Z形截面柱模型并进行位移加载,对应力云图、滞回曲线、骨架曲线、延性系数和等效黏滞系数等力学性能指标进行分析.研究结果表明:模拟的结果与试验结果吻合良好,采用分离式模型建立的钢筋混凝土有限元模型可以用于RC Z形截面柱抗震性能的研究. 展开更多
关键词 钢筋混凝土Z形截面柱 斜向受剪 抗震性能 ANSYS有限元模拟
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配筋砌块砌体剪力墙连梁抗震性能的试验研究 被引量:9
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作者 田玉滨 唐岱新 《建筑结构学报》 EI CAS CSCD 北大核心 2002年第4期42-47,共6页
本文通过16个配筋砌块砌体剪力墙连梁的伪静力试验研究了配筋砌块连梁的抗震性能,考察了跨高比和配筋率两个影响因素。探讨了不同影响因素下连梁在水平往复荷载作用下的破坏特征、承载能力、滞回性能、骨架曲线、延性、耗能比等问题;对... 本文通过16个配筋砌块砌体剪力墙连梁的伪静力试验研究了配筋砌块连梁的抗震性能,考察了跨高比和配筋率两个影响因素。探讨了不同影响因素下连梁在水平往复荷载作用下的破坏特征、承载能力、滞回性能、骨架曲线、延性、耗能比等问题;对比了砌块连梁和混凝土连梁通过配筋加强后的相应特征的异同。试验结果表明:配筋砌块连梁破坏反映了砌块组砌的特点,从破坏形态角度可分为剪切、弯曲和剪弯三种类型;由滞回曲线可以看出,配筋砌块连梁具有良好的抗震性能,所得的归一化骨架曲线为进一步进行配筋砌块剪力墙结构整体工作的计算分析提供必要的数据。 展开更多
关键词 试验 配筋砌体 剪力墙 连梁 伪静力试验 抗震性能 砌块
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