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The Effect of Polymer Microstructure and Thermal Post-Treatment on Latex-Based Pressure Sensitive Adhesive Performance

机译:聚合物微观结构和热后处理对基于胶乳的压敏粘接性能的影响

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Butyl acrylate/acrylic acid/2-hydroxyl methacrylate (BA/AA/HEMA, weight ratio: 96/2/2) latexes were produced via starved seeded semi-batch emulsion polymerization. The microstructure of the latex polymers was controlled by varying the amount of chain transfer agent (1-dodecanethiol). The latexes were characterized for gel content, M_c (molecular weight between two adjacent cross-linking points), M_w (molecular weight of sol polymers) and M_e (molecular weight between entanglements). From these latexes, PSA films were cast, dried, conditioned and then thermally post-treated at 120 °C to react the carboxyl and hydroxyl groups from the AA and HEMA units. Tack, peel strength and shear strength of the PSA films were then measured. The thermal post-treatment was shown to be an effective way to improve latex-based PSA performance. The effectiveness of the post-treatment was observed to depend on the polymer microstructure (M_c relative to M_e relative to M_w) of the untreated latex-based PSAs and on the gel content.
机译:丙烯酸丁酯/丙烯酸/ 2-羟基甲基丙烯酸酯(BA / AA / HEMA,重量比:96/2/2)胶乳分别经由饥饿接种半间歇乳液聚合制备。胶乳聚合物的微观结构进行了通过改变链转移剂(1-十二烷基硫醇)的量来控制。胶乳进行了表征为凝胶含量,M_C(两个相邻的交联点之间的分子量),M_W(分子量溶胶聚合物)和M_E(缠结之间的分子量)。从这些胶乳,PSA膜浇铸,干燥,空调,然后热在120℃下后处理-反应从AA和HEMA单位羧基和羟基基团。然后粘着性,剥离强度和PSA膜的剪切强度进行了测定。热后处理被证明是改善基于乳胶的PSA性能的有效方法。观察到的后处理的有效性依赖于未处理的胶乳基PSA的聚合物微结构(相对于M_E相对于M_W M_C)和凝胶含量。

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