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Dual-curable acrylic pressure-sensitive adhesives based on UV and thermal processes

机译:基于紫外线和热过程的双固化丙烯酸压敏胶

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Several dual-curable acrylic pressure-sensitive adhesives (PSA) were synthesized by the radical polymerization of acrylic monomers containing benzophenone, hydroxyl, and alkyl groups. The optimum extent of UV-induced cure was determined by varying the content of the benzophenone groups (the photoinitiator) from 0.5 to 1.5 wt%. The weight average molecular weight of the polymers obtained ranged from 300,000 to 700,000 amu. The coated pressure-sensitive adhesives were cured either by short UV exposure to induce the grafting of acrylic polymers, or by heating for 6 h at 60 °C to promote the reactions between the polyisocyanates and hydroxyl groups. The dual-curing behavior was determined by monitoring both processes quantitatively by infrared spectroscopy. The developed dual-curable acrylic pressure-sensitive adhesives were found to compensate for the limitations in UV-induced curing of thick coatings.
机译:通过含有二苯甲酮,羟基和烷基的丙烯酸单体的自由基聚合反应,合成了几种双固化丙烯酸压敏胶粘剂(PSA)。通过将二苯甲酮基团(光引发剂)的含量从0.5重量%更改为1.5重量%,可以确定UV诱导固化的最佳程度。所得聚合物的重均分子量为300,000至700,000 amu。可以通过短时暴露于紫外线下以诱导丙烯酸类聚合物的接枝,或通过在60°C下加热6小时以促进多异氰酸酯与羟基之间的反应来固化涂覆的压敏胶粘剂。通过用红外光谱法定量监测两个过程来确定双重固化行为。发现开发的双固化丙烯酸压敏胶粘剂可以补偿紫外线引起的厚涂层固化中的局限性。

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