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Adhesives for Achieving Durable Bonds with Acetylated Wood

机译:用乙酰化木材实现持久粘结的胶粘剂

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摘要

Acetylation of wood imparts moisture durability, decay resistance, and dimensional stability to wood; however, making durable adhesive bonds with acetylated wood can be more difficult than with unmodified wood. The usual explanation is that the acetylated surface has fewer hydroxyl groups, resulting in a harder-to-wet surface and in fewer hydrogen bonds between wood and adhesive. This concept was evaluated using four different adhesives (resorcinol–formaldehyde, emulsion polymer isocyanate, epoxy, and melamine–formaldehyde) with unmodified wood, acetylated wood, and acetylated wood that had been planed. Strikingly, acetylation did not hinder adhesive bonds with a waterborne resorcinol–formaldehyde adhesive that bonded equally well to both unmodified and acetylated yellow poplar. An epoxy adhesive bonded better to the acetylated wood than to the unmodified wood, in contrast to an emulsion polymer isocyanate, which gave less durable bonds to acetylated than to unmodified wood. Planing of the acetylated wood surface prior to bonding reduced bond durability for the epoxy adhesive and increased the amount of surface hydroxyl groups, as measured using X-ray photoelectron spectroscopic analysis of the trifluoroacetic anhydride-treated wood. These experiments showed that wood modification is useful in understanding wood-adhesive interactions, in addition to determining how to develop adhesives for acetylated woods.
机译:木材的乙酰化为木材赋予了耐湿性,耐腐性和尺寸稳定性。但是,与未改性的木材相比,与乙酰化的木材进行持久的粘合会更加困难。通常的解释是,乙酰化的表面具有较少的羟基,从而导致较难润湿的表面以及木材与粘合剂之间的氢键较少。使用四种不同的粘合剂(间苯二酚-甲醛,乳液聚合物异氰酸酯,环氧树脂和三聚氰胺-甲醛)与计划中的未改性木材,乙酰化木材和乙酰化木材进行了评估。令人惊讶的是,乙酰化作用不会阻碍与间苯二酚-甲醛胶粘剂的粘合,后者与未修饰的和乙酰化的黄杨树均能很好地粘合。与乳液聚合物异氰酸酯相反,环氧胶粘剂与乙酰化木材的粘合性比未改性木材好,而乳化聚合物异氰酸酯与乙酰化木材的粘合力比未改性木材差。使用X射线光电子能谱分析对三氟乙酸酐处理过的木材进行测量,在粘合之前对乙酰化的木材表面进行刨光会降低环氧粘合剂的粘合耐久性,并增加表面羟基的数量。这些实验表明,木材改性除确定如何开发用于乙酰化木材的粘合剂外,还可用于了解木材与粘合剂的相互作用。

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