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Lateral Structural Performance of Column Frame Layer and Dou-Gong Layer in a Timber Structure

机译:木材结构柱框架层和斗拱层的横向结构性能

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In this study, a 1:2 scale model of a timber building with a column frame layer and a Dou-Gong layer was fabricated according to the construction method that prevailed during the Song dynasty, China (A.D. 960-1279). Three quasi-static tests were conducted on the model under three levels of vertical loads to study the seismic response of the column frame layer and Dou-Gong layer in a timber structure. The experimental results indicated that the ultimate loading state of the timber structure was mainly controlled by the lateral displacement of the column frame layer. The hysteretic behaviour and stiffness characteristics of the column frame layer were quite similar to those of the overall structure. The stiffness of the Dou-Gong layer was much higher than that of the column frame layer, and no stiffness degradation was observed in the Dou-Gong layer. Fairly little energy was dissipated by the Dou-Gong layer; more than 80% of the structural energy dissipation that occurred was attributable to the column frame layer. Moreover, based on the deformation features of the column frame and Dou-Gong layer, a theoretical model for estimating the restoring force of the overall structure was established.
机译:在这项研究中,按照中国宋朝(公元960-1279年)盛行的建造方法,制作了具有圆柱框架层和斗拱层的木材建筑的1:2比例模型。在三个垂直荷载水平下对该模型进行了三个准静态测试,以研究木结构中的柱框架层和斗拱层的地震响应。实验结果表明,木结构的极限荷载状态主要受柱框架层的横向位移控制。柱框架层的滞回特性和刚度特性与整体结构非常相似。豆公层的刚度远高于圆柱框架层,在豆公层中未观察到刚度下降。斗拱层几乎没有消耗任何能量。超过80%的结构耗能归因于柱框架层。此外,根据柱架和斗拱层的变形特征,建立了估算整体结构恢复力的理论模型。

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