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

机译:聚合物微结构和热处理对基于乳胶的压敏粘合性能的影响

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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:通过饥饿的接种半批液乳液聚合产生丙烯酸丙烯酸酯/丙烯酸/ 2-羟基甲基丙烯酸酯(BA / AA / HEMA,重量比:96/2/2)胶乳。通过改变链转移剂(1-十二烷硫醇)的量来控制胶乳聚合物的微观结构。胶乳的特征在于凝胶含量,M_C(两个相邻的交联点之间的分子量),M_W(溶胶聚合物的分子量)和M_E(缠结之间的分子量)。从这些胶乳,铸造PSA薄膜,干燥,调节,然后在120℃下热后处理,从AA和HEMA单元中反应羧基和羟基。然后测量PSA薄膜的剥离强度和剪切强度。显示热后处理是改善基于乳胶的PSA性能的有效方法。观察到后处理的有效性以取决于未处理的胶乳基碱基和凝胶含量的聚合物微结构(相对于M_E)的聚合物微结构(相对于M_E)。

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