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首页> 外文期刊>Journal of structural engineering >Effect of Wetting and Redrying on Performance of Cross-Laminated Timber Angle Bracket Connection
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Effect of Wetting and Redrying on Performance of Cross-Laminated Timber Angle Bracket Connection

机译:润湿和重新磨削对交叉层压木材角支架连接性能的影响

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摘要

Cross-laminated timber (CLT) is an engineered wood product offering several advantages for wood utilization in midrise and tall buildings. However, moisture intrusion poses significant risks since it can affect the durability of CLT structural members and their connections. There has been much research on connection performance to understand their seismic response. However, the impact of moisture on the performance of CLT connectors is less understood. Cyclic tests were conducted on a series of CLT shear wall-to-diaphragm L-bracket (angle bracket) connections after subjecting them to a wetting and redrying cycle. The study includes three exposure durations and four wood species (Douglas fir, Southern yellow pine, Norway spruce, and spruce-pine-fir) to investigate the effect of moisture exposure on the connection performance. The performance was characterized in terms of strength, stiffness, and energy dissipation. In addition, two existing engineering force-displacement models were fitted to the experimental data. Results indicate that the changes due to wetting and redrying cycling were not statistically significant for the load-carrying capacity and stiffness. In contrast, a statistically significant decrease in the total energy dissipation capacity was observed.
机译:交叉层压木材(CLT)是一种工程木材产品,为中转和高层建筑的木材利用提供了多种优势。然而,水分入侵造成显着的风险,因为它可以影响CLT结构构件及其连接的耐用性。有很多关于连接性能的研究,以了解他们的地震反应。然而,水分对CLT连接器的性能的影响较少理解。在对其进行润湿和重新循环之后,在一系列CLT剪切壁 - 到隔膜L-支架(角度括号)连接上进行循环试验。该研究包括三种曝光持续的持续时间和四种木种(Douglas FIR,南方黄松,挪威云杉和云杉 - 松杉),以研究水分暴露对连接性能的影响。性能的特征在于强度,僵硬和能量耗散。此外,两个现有的工程力 - 位移模型适用于实验数据。结果表明,由于润湿和Redrying循环引起的变化对于承载能力和刚度而言并不统计学意义。相比之下,观察到总能量耗散能力的统计上显着降低。

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