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Self-Centering Steel–Timber Hybrid Shear Wall: Experimental Test and Parametric Analysis

机译:自定心钢木混合剪力墙:实验测试和参数分析

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摘要

Due to timber material’s environmental benefits and satisfactory structural properties, the studies on providing solutions to the application of timber to mid-rise or even high-rise buildings have been recently increasing. Among them, the steel–timber hybrid shear wall (STHSW) is one of the promising lateral resisting systems. However, the application of the system is limited because of its unsatisfactory earthquake resilience. In this paper, a new system, self-centering (SC)-STHSW, is proposed by introducing post-tensioned (PT) technology into the STHSW system. The cyclic loading test of one full-scale SC-STHSW specimen was conducted. The new system was proved to have both satisfactory self-centering capacity and the sufficient energy dissipation. Within the OpenSees platform, a numerical model was developed and validated by the experiment result. The model was further used in the parametric analysis. The system’s self-centering capacity, energy dissipation performance and the ultimate strength were evaluated under multiple parameters. The parameters included the initial PT stress ratio, the relative value of the damper’s activation force, the wood shear wall’s resistance, the beam section height and the wood shear wall’s strength. The lateral wall-to-frame stiffness ratio was also considered. Each parameter’s effects on three different performances of the system were analyzed. Based on the analysis results, a design parameter, a self-centering ratio, was proposed. The ratio was suggested to be larger than 0.5 to ensure a favorable self-centering performance in the system. This study provides support to the application of the innovative steel–timber hybrid structural system in practical engineering.
机译:由于木材材料的环境效益和令人满意的结构性能,最近为在中高层甚至高层建筑中使用木材提供解决方案的研究不断增加。其中,钢木混合剪力墙(STHSW)是有前途的侧向抵抗体系之一。但是,由于该系统的抗震性不理想,因此其应用受到限制。本文通过将后张紧(PT)技术引入STHSW系统中,提出了一种新的系统,即自定心(SC)-STHSW。进行了一个完整的SC-STHSW标本的循环载荷测试。新系统被证明具有令人满意的自动定心能力和足够的能量消散能力。在OpenSees平台内,开发了一个数值模型并通过实验结果进行了验证。该模型进一步用于参数分析。该系统的自定心能力,消能性能和极限强度在多个参数下进行了评估。这些参数包括初始PT应力比,阻尼器的激活力的相对值,木剪力墙的阻力,梁截面高度和木剪力墙的强度。还考虑了侧壁与框架的刚度比。分析了每个参数对系统三种不同性能的影响。根据分析结果,提出了一种设计参数,即自定心率。建议该比率大于0.5,以确保系统中良好的自定心性能。这项研究为创新的钢木混合结构系统在实际工程中的应用提供了支持。

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