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Structural performance of CLT shear connections with castellations and angle brackets

机译:CLT剪切连接与城堡和角托架的结构性能

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摘要

The advent of digital fabrication technologies and mass timber products such as cross-laminated timber (CLT) have facilitated the use of traditional carpentry joints in modern mass timber construction. Through contact bearing, mortise and tenon castellated joints can also provide high shear strength and stiffness between timber members when compared to connections using mechanical connectors/fasteners. In this study, a total of 29 connection specimens using carpentry castellations and six connection specimens using commercial angle brackets were tested under monotonic loading to evaluate their structural performance. These specimens used five-ply (175 mm thick) and seven-ply (275 mm thick) CLT panels. It was found that the shear strength and stiffness of the castellated joints were 2.5 and 7 times greater than the specimens using the commercial angle brackets. A simplified component-based analytical model was also developed to predict the strength of the castellated joints loaded parallel and perpendicular to grain of the CLT outer layers. The simplified model was found to be adequate in estimating strength given the model limitations. Overall, the study showed that these castellated CLT joints can provide one effective connection type with high shear strength and stiffness for CLT structures.
机译:数字制造技术和群众木材产品如交叉层压木材(CLT)的出现促进了现代群众木材建筑中传统的木工关节。与使用机械连接器/紧固件的连接相比,通过接触轴承,榫眼和榫冠间接头也可以在木材构件之间提供高剪切强度和刚度。在该研究中,在单调负载下测试了使用木工集上的29个连接样品和使用商业角度括号的六个连接样品进行调查,以评估它们的结构性能。这些样品使用5层(厚)和七个(275毫米厚)的CLT面板。发现,使用商业角度托架的剪切强度和刚度的剪切强度和刚度比样品大的2.5倍和7倍。还开发了一种简化的基于组分的分析模型,以预测平行于CLT外层的平行和垂直于CLT外层的颗粒的穿孔接头的强度。发现简化模型在鉴于模型限制的估计强度方面是足够的。总的来说,该研究表明,这些穿孔的CLT接头可以提供一种具有高剪切强度和CLT结构刚度的有效连接型。

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