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Copolymerization of UF Resins with Dimethylurea for Improving Storage Stability without Impairing Adhesive Performance

机译:UF树脂与二甲基脲共聚以提高储存稳定性而不损害胶粘剂性能

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摘要

Urea-formaldehyde (UF) resins are the most used resins in the wood industry due to high reactivity and low price. However, their reduced stability during storage is a drawback, imposing strict limits in terms of allowable shipping distances and storage times. This instability, manifested by viscosity increase that renders the resin unusable, occurs due to the progress of condensation reactions between the polymeric species present in the liquid medium. In order to achieve a stable resin formulation, dimethylurea (DMeU) was selected for being less reactive than urea. Dimethylurea is shown to co-polymerize with the UF polymer during the acidic synthesis condensation step. However, during storage it behaves like an end group blocker, due to its lower reactivity at basic pH. By adding 1.25% DMeU, it was possible to obtain a formulation that remained with stable viscosity during two-month storage at 40 °C. The reference UF resin remained stable only for eight days in these conditions. Wood particleboards produced with modified resins showed internal bond strengths of about 0.5 N·mm−2, similar to the fresh reference UF resin, even when the resins were used after the two-month storage period. Formaldehyde content values were below the limit for E1 class, ≤8 mg/100 g oven dry board (EN 13986).
机译:脲醛(UF)树脂因其高反应性和低价格而成为木材工业中最常用的树脂。但是,它们在储存期间降低的稳定性是一个缺点,在允许的运输距离和储存时间方面施加了严格的限制。这种不稳定性表现为使树脂无法使用的粘度增加,这是由于液体介质中存在的聚合物之间的缩合反应的进行而发生的。为了获得稳定的树脂配方,选择了二甲基脲(DMeU),因为它的反应活性低于尿素。已显示二甲基脲在酸性合成缩合步骤中与UF聚合物共聚。但是,由于在碱性pH值下反应性较低,因此在存储过程中,它的作用类似于端基阻滞剂。通过添加1.25%DMeU,可以获得在40℃下储存两个月期间保持稳定粘度的制剂。在这些条件下,参考UF树脂仅稳定八天。用改性树脂生产的木板刨花板即使在两个月的储存期后使用树脂,也表现出约0.5 N·mm -2 的内部粘合强度,类似于新鲜的参考UF树脂。甲醛含量值低于E1级的极限值,≤8 mg / 100 g烤箱干燥板(EN 13986)。

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