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首页> 外文期刊>Journal of intelligent material systems and structures >Seismic control of concrete shear wall using shape memory alloys
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Seismic control of concrete shear wall using shape memory alloys

机译:利用形状记忆合金控制混凝土剪力墙。

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摘要

Shape memory alloy is a new functional material, which has found increasing applications in many engineering areas. Research efforts have been extended to use shape memory alloy in controlling civil structures. In this article, both pseudoelastic and shape memory effect properties of Nitinol shape memory alloy are implemented for control of concrete shear wall structure when subjected to seismic excitation. First, the behavior of the concrete shear walls equipped with shape memory reinforcements in its pseudoelastic characteristics is assessed, and the results are compared with the behavior of the ordinary concrete shear wall utilizing steel reinforcements. A finite element time history analysis is employed, and the results indicate that the proposed enhancement of the concrete shear wall with shape memory alloy reinforcements is able to reduce the permanent residual strain in the structure and hence attain reasonable improvement in seismic response. Then, the memory effect characteristics of shape memory alloys by imposing pretension in SMA rebar in concrete shear wall are evaluated. The results show that the concrete shear wall equipped with pretension rebars is much stiffer than either the concrete shear wall equipped with pseudoelastic shape memory alloy rebars or the ordinary concrete shear wall with steel.
机译:形状记忆合金是一种新的功能材料,已在许多工程领域中得到越来越多的应用。研究工作已经扩展到使用形状记忆合金来控制民用结构。在本文中,实现了镍钛诺形状记忆合金的拟弹性和形状记忆效应特性,以在地震激励下控制混凝土剪力墙结构。首先,评估了具有形状记忆增强材料的拟剪力混凝土剪力墙的性能,并将其结果与使用钢增强材料的普通混凝土剪力墙的性能进行了比较。进行了有限元时程分析,结果表明,建议的形状记忆合金增强混凝土剪力墙能够减少结构中的永久残余应变,从而在地震响应方面取得合理的改善。然后,通过在混凝土剪力墙的SMA钢筋中施加预应力来评估形状记忆合金的记忆效应特性。结果表明,装有预应力钢筋的混凝土剪力墙比装有拟弹性形状记忆合金钢筋的混凝土剪力墙或普通的钢钢筋混凝土剪力墙要坚硬得多。

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