木工粘接接头抗大气波动的性能评价

Gheorghe Pei, O. Horbachova, Y. Tsapko, S. Mazurchuk, B. Denysiuk
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引用次数: 0

摘要

木材和木制胶合产品广泛用于各种建筑行业的建筑结构,这些行业在广泛的大气因素范围内运行,并要求稳定性和耐久性。因此,我们的目标是进行实验研究,以确定木材制成的窗口元件在温度和湿度静态波动影响下的粘接稳定性。为此,本文采用综合的方法,通过研究粘接层在大范围内改变温度和湿度场时的抗破坏能力,实验验证了胶合木层的有效性。根据胶合木材等温度、湿度场作用下胶粘剂层边界的实验值,确定聚氨酯胶粘剂的抗拉强度为0.29 N/mm2,效果最佳。对于橡胶胶和PVA,抗拉强度为0.17 N/mm2,由于其性能,具有很好的附着力。这是由于粘合剂成分必须具有足够的弹性,以允许木材在温度的影响下膨胀和变干。基于丁酸盐和液态玻璃的胶合层的抗拉强度分别设定为0.07 N/mm2和0.12 N/mm2。丁酸盐的粘接能力的下降是由于在低温水平下,它失去了它的性质。液态玻璃基胶粘剂具有碱性环境,并与木材树脂酸组分相互作用,降低附着力。所获得的结果允许根据操作条件选择有效的粘合剂用于从木材生产复合材料,并提供胶合木材的性能
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the resistance of adhesive joints of carpentry to atmospheric fluctuations
Wood and wooden glued products are widely used as building structures in various construction industries that operate within a wide range of atmospheric factors and require stability and durability. Therefore, the goal was to conduct experimental studies to determine the stability of the adhesive bond of a window element made of wood under the influence of temperature and moisture static fluctuations. In this regard, a comprehensive approach was applied to experimentally establish the effectiveness of the glued wood layer by investigating the resistance of the adhesive layer to destruction when changing temperature and humidity fields within a wide range. According to the experimental values of the adhesive layer boundary after exposure to temperature and humidity fields such as glued wood, it was established that the best result of the tensile strength (0.29 N/mm2) was obtained for polyurethane adhesive. For rubber glue and PVA, the tensile strength was 0.17 N/mm2, which provides adhesion quite well due to its properties. This is due to the fact that the adhesive composition must have sufficient elasticity to allow the wood to expand and dry out under the influence of temperature. In turn, the glued layer based on bustilate and liquid glass, has the tensile strength set at a preasure of 0.07 N/mm2 and 0.12 N/mm2 accordingly. A decrease in the adhesive capacity for bustilate is due to the fact that at a low-temperature level, it loses its properties. The liquid glass-based adhesive has an alkaline environment and interacts with the components of wood resin acids, reducing adhesion. The results obtained allow selecting effective adhesives for the production of composite materials from wood, depending on the operating conditions, and provide for the properties of glued wood
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