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Thermoplastic and moisture-dependent behavior of lignin phenol formaldehyde resins

机译:木质素酚醛树脂的热塑性和水分依赖性行为

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摘要

Bonding kinetics of thermosetting adhesives is influenced by a variety of factors such as temperature, humidity, and resin properties. A comparison of lignin-based phenol formaldehyde (LPF) and phenol formaldehyde (PF) adhesive in terms of reactivity and mechanical properties referring to testing conditions (temperature, moisture of specimen) were investigated. For this purpose, two resins were manufactured aiming for similar technological resin properties. The reactivity was evaluated by B-time measurements at different temperatures and the development of bonding strength at three different conditions, testing immediately after hot pressing, after applying a cooling phase after hot pressing, or sample conditioning at standard climate. In addition, the moisture stability of the two fully cured resins was examined. The calculated reactivity index demonstrated that LPF requires more energy for curing than PF. Further results indicate that lignin as substituent for phenol in PF resin has a negative impact on its moisture resistance. Additionally, the known thermoplastic behavior of lignin could also be detected in the behavior of the cured resin. This behavior is relevant for the adhesive in use and necessitates a cooling phase before testing the bonding strength development of lignin-based adhesive systems. (c) 2019 The Authors. Journal of Applied Polymer Science published by Wiley Periodicals, Inc.
机译:热固性粘合剂的粘合动力学受到温度,湿度和树脂性能的各种因素的影响。研究了基于木质素的酚醛甲醛(LPF)和苯酚甲醛(PF)粘合剂,在反应性和机械性能方面,参考测试条件(温度,样品的水分)。为此目的,制造两种树脂的旨在用于类似的技术树脂性质。通过在不同温度下的B型测量和三种不同条件下的粘合强度的发展评估反应性,在热压后立即试验,在热压后施加冷却阶段,或在标准气候中的样品调节后立即测试。此外,检查了两个完全固化树脂的水分稳定性。计算的反应性指数证明LPF需要比PF更高的固化能量。进一步的结果表明,PF树脂中苯酚作为取代基的木质素对其防潮性产生负面影响。另外,也可以在固化树脂的行为中检测木质素的已知热塑性行为。这种行为与使用的粘合剂相关,并且在测试基于木质素的粘合剂系统的粘合强度发展之前需要冷却阶段。 (c)2019年作者。 Wiley期刊出版社应用聚合物科学杂志CHINESE。

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