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首页> 外文期刊>Journal of intelligent material systems and structures >Effectiveness of the shape memory alloy reinforcement in concrete coupled shear walls
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Effectiveness of the shape memory alloy reinforcement in concrete coupled shear walls

机译:形状记忆合金钢筋在混凝土剪力墙中的有效性

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摘要

The use of shape memory alloys as a rebar in concrete structures has been receiving increasing attention among researchers. In this study, it is intended to evaluate the application of superelastic Nitinol in reducing the damage to the coupling beams and opening corners within a concrete shear wall. Abaqus finite element software was utilized to develop three verified coupled shear wall models. First, a model without diagonal and shape memory alloy rebars is developed to assess conventional shear walls with openings. Steel diagonal rebars are embedded in the coupling beams of the second model, and shape memory alloy diagonal rebars are embedded in the coupling beams of the third model. Shape memory alloy is also implemented in the opening corners of the third model. All models are subjected to cyclic loading to evaluate the concrete damage. Results indicated that the diagonal rebars reduced damage to the coupling beam and opening corners. The damages were the least when shape memory alloy diagonal rebars are utilized in the model. The superelastic behavior of the shape memory alloy also reduced permanent displacement of the shear wall subjected to substantial lateral loadings.
机译:在混凝土结构中使用形状记忆合金作为钢筋已受到研究人员的越来越多的关注。在这项研究中,旨在评估超弹性镍钛诺在减少混凝土剪力墙内的耦合梁和开口角损坏方面的应用。利用Abaqus有限元软件来开发三个经过验证的耦合剪力墙模型。首先,开发了没有对角线和形状记忆合金钢筋的模型,以评估带有开口的传统剪力墙。钢对角线钢筋嵌入第二种模型的连接梁中,形状记忆合金对角线钢筋嵌入第三种模型的连接梁中。在第三个模型的开口角中也采用了形状记忆合金。所有模型都承受周期性载荷,以评估混凝土损伤。结果表明,对角钢筋减少了对耦合梁和开口角的损坏。当在模型中使用形状记忆合金对角钢筋时,损伤最小。形状记忆合金的超弹性行为还减少了承受较大横向载荷的剪力墙的永久位移。

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