层压板扭转和夹紧压力对交叉层压材中低等级木材粘合性能的影响

Abiola Teslim Adeniran, Karl Englund, Hui Li, Dalisson Peterson Silva do Carmo
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引用次数: 0

摘要

低等级木材的几何变化引起了人们对用此类木材生产的交错层压材(CLT)粘结强度的担忧。本研究旨在探讨低夹紧压力和层压板几何变化对 CLT 粘接强度的影响。CLT 板材由低等级冷杉(Abies grandis)制成。在特定点随机抽取的试样上进行了块体剪切试验和循环分层试验,这些点对应的扭曲幅度范围很广。在 CLT 中用作层压板的木材的扭曲分布范围为 0 至 160 毫米。结果表明,扭转幅度和夹紧压力对粘结性能有显著影响,而扭转幅度对压力的影响更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Laminate Twist and Clamping Pressure on Bonding Performance of Low-Grade Lumber in Cross-Laminated Timber
The geometric variations of low-grade lumber raise concerns about bond strength of cross-laminated timber (CLT) produced from such lumber. This study seeks to investigate the effect of low clamping pressure and geometric variations of laminates on the bond strength of CLT. CLT panels were manufactured from low-grade grand fir (Abies grandis). Block shear tests and cyclic delamination tests were conducted on specimens randomly taken at specific points that correspond to a wide range of twist magnitude. Twist distribution in the lumber used as laminates in the CLT ranges from 0 to 160 mm. Results showed that twist magnitude and clamping pressure have significant effect on bond performance, with twist magnitude having an overriding effect on pressure.
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