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Influence of ply configuration and adhesive type on cross-laminated timber in flexure at elevated temperatures

机译:胶层型构型和粘合剂型对高温弯曲弯曲中的交叉层压木材的影响

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摘要

This paper describes experiments on cross-laminated timber (CLT) beams exposed to uniform non-charring temperatures under sustained loading. Two different ply configurations and two different adhesive types were examined under sustained loads of both 30 and 50% of the ultimate ambient temperature flexural capacity. It was found that the adhesive type has a significant influence on the magnitude of the deterioration in structural stiffness during heating. From image correlation analysis this influence was attributed to increased shear strains along the adhesive lines between timber plies for specimens bonded with a polyurethane (PU) adhesive, when compared to those that used a melamine urea formaldehyde (MF) adhesive. It was also found that considerable deflections that were measured during heating were irrecoverable during cooling of the CLT, suggesting that these deformations were driven by creep of the timber ? and possibly also the adhesives.
机译:本文介绍了在持续加载下暴露于均匀的非炭化温度的交叉层叠木材(CLT)梁的实验。 在最终环境温度弯曲能力的30%和50%的持续载荷下检查了两种不同的PLY配置和两种不同的粘合剂类型。 发现粘合剂型对加热过程中结构刚度劣化的幅度的显着影响。 从图像相关性分析,当与使用三聚氰胺脲甲醛(MF)粘合剂的那些相比,这种影响归因于沿着与聚氨酯(PU)粘合剂粘合的样品的木质层之间的粘合线增加。 还发现,在加热过程中,在加热期间测量的相当大的挠曲在CLT的冷却过程中,表明这些变形是由木材的蠕变驱动的? 也可能是粘合剂。

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