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Seismic resilience timber connectionadoption of shape memory alloy tubes as dowels

机译:抗震木材连接采用形状记忆合金管作为销钉

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摘要

This study investigates a novel timber dowel-type connection system using superelastic shape memory alloy (SMA) bar and tubes as dowels, in order to provide self-centering effect. Double-shear connections with SMA and mild steel dowels were tested under dynamic loadings at different displacement levels. The results showed that SMA dowel-type connections have good self-centering behaviours and can mitigate the residual deformation effectively compared with steel dowel-type connections after excessive deformation; although the steel dowel-type connections present higher strength. These tests reveal that the connection with tube dowels show higher equivalent viscous damping ratio than those use solid bar as tube would allow larger deformation to dissipate energy. To demonstrate application of the benefit of this system, an analytical model of a 3-storey timber framed structure was built for parametric study. The results showed that the structures with conventional dowel-type type connections exhibit large unrecoverable deformation after timber framed structures experience an earthquake. In comparison, those with the connections developed in this project show limited unrecoverable deformation due to the self-centering capacity of the connections.
机译:这项研究研究了一种新型的木榫型连接系统,该系统使用超弹性形状记忆合金(SMA)棒和管作为榫钉,以提供自定心效果。使用SMA和低碳钢销钉进行的双剪切连接在不同位移水平下的动态载荷下进行了测试。结果表明,与钢制销钉形连接相比,SMA销形连接具有良好的自定心性能,并且在过度变形后可以有效地减轻残余变形。尽管钢制销形连接具有更高的强度。这些测试表明,与实心销相比,与实心销的连接显示出更高的等效粘性阻尼比,因为实心管将允许更大的变形来耗散能量。为了演示该系统的好处,建立了一个三层木框架结构的分析模型用于参数研究。结果表明,木框架结构遭受地震后,具有传统销钉型连接的结构呈现出不可恢复的大变形。相比之下,在本项目中开发的带有连接件的连接件由于连接件的自对中能力而显示出有限的不可恢复的变形。

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