首页> 外文期刊>Journal of Performance of Constructed Facilities >Experimental and Numerical Investigation on Seismic Performance of One-Way Straight Mortise-Tenon Joints Based on a Novel Method to Simulate Damage of Deteriorated Ancient Chinese Timber Buildings
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Experimental and Numerical Investigation on Seismic Performance of One-Way Straight Mortise-Tenon Joints Based on a Novel Method to Simulate Damage of Deteriorated Ancient Chinese Timber Buildings

机译:基于一种模拟古代木材建筑损伤的新方法单向直榫接头抗震性能的实验与数值研究

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摘要

Being exposed to weather directly or indirectly for more than 100 years, ancient timber buildings have experienced different levels of mechanical degradation. Especially the mortise-tenon joints, which play a crucial role in resisting various loads for these buildings, have suffered from severe deformations and damages, resulting in a significant reduction in the structural safety for the ancient timber buildings. In this study, a method is proposed to quantitatively describe the destruction of one-way straight mortise-tenon (OWSMT) joints, and the impact of joint damage on the seismic performance of the ancient timber structure was studied. The deterioration of the mortise-tenon joints was simulated by changing the size of the mortise, and controlling the width of the mortise compression zone and the gap between the tenon and the mortise. Low-cyclic loading tests were carried out on 23 groups of OWSMT joint specimens. The structural performance in terms of M-theta skeleton curves, stiffness degradation, and equivalent viscous damping of the OWSMT joints were obtained. Through the comparative analysis of the experimental and numerical simulation results, this paper further analyzes the seismic performance of the damaged timber joints.
机译:古代木材建筑直接或间接地暴露于天气,经历了不同水平的机械降解。特别是在抵抗这些建筑物的各种载荷方面发挥着至关重要的作用的榫眼关节遭受了严重的变形和损害,导致古代木材建筑的结构安全显着降低。在这项研究中,提出了一种方法来定量地描述单向直接榫眼(OWSMT)关节的破坏,并研究了联合损害对古代木结构抗震性能的影响。通过改变榫眼的大小,并控制榫眼压缩区的宽度以及榫接的差距和榫眼的宽度来模拟榫眼关节的劣化。在23组OWSMT关节标本上进行低循环加载试验。得到了M-THEA骨架曲线,刚度降解和OWSMT关节的等效粘性阻尼的结构性能。通过对实验和数值模拟结果的比较分析,本文进一步分析了损坏的木材关节的地震性能。

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