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Effects of Compatibility of Acrylic Block Copolymer and Tackifier on Phase Structure and Peel Adhesion of Their Blend

机译:丙烯酸嵌段共聚物与增粘剂的相容性对其共混物相结构和剥离粘合力的影响

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The effect of compatibility of polymer and tackifier on the adhesion properties of pressure-sensitive adhesive tape was investigated. For this purpose, a model pressure-sensitive adhesive tape was prepared. A mixture of poly(methyl methacrylate)-block-poly(butyl acrylate)-block-poly(methyl methacrylate) triblock copolymer and a similar diblock copolymer was used as the base polymer. And three kinds of tackifiers, namely a rosin phenolic resin (A), a special rosin ester resin (B) and a hydrogenated cycloaliphatic resin (C) were used. The compatibility with the base polymer was in the order of tackifier A > B > C. Transmission electron microscopy studies confirmed that the tackifier A had good compatibility, where agglomerates of the tackifier with a size of about 10 nm only were observed. Larger and distinct agglomerates of tackifier were observed for tackifier B and the size increased with the tackifier content. The tackifier C formed domains with a mean size of several tens pm. Dynamic mechanical analysis indicated that both the glass transition temperature and modulus increased at low temperature and the modulus at high temperature decreased by the addition of tackifier for tackifiers A and B. This tendency was more remarkable for tackifier A as compared to tackifier B. An increase of the glass transition temperature was never observed for tackifier C. The peel adhesion was in the order of tackifier A > B > C. It was found that the compatibility of tackifier and base polymer had strong effect on adhesion properties.
机译:研究了聚合物与增粘剂的相容性对压敏胶粘带粘合性能的影响。为此,制备了模型压敏胶粘带。聚(甲基丙烯酸甲酯)-嵌段-聚(丙烯酸丁酯)-嵌段-聚(甲基丙烯酸甲酯)三嵌段共聚物和类似的二嵌段共聚物的混合物用作基础聚合物。并且使用了三种增粘剂,即松香酚醛树脂(A),特殊的松香酯树脂(B)和氢化脂环族树脂(C)。与基础聚合物的相容性为增粘剂A> B> C的顺序。透射电子显微镜研究证实,增粘剂A具有良好的相容性,其中仅观察到约10 nm大小的增粘剂附聚物。对于增粘剂B,观察到更大和独特的增粘剂附聚物,并且尺寸随着增粘剂含量而增加。增粘剂C形成平均尺寸为几十μm的区域。动态力学分析表明,通过添加增粘剂A和B的增粘剂,低温下的玻璃化转变温度和模量均增加,而高温下的模量降低。与增粘剂B相比,增粘剂A的这种趋势更为明显。增粘剂C从未观察到玻璃化转变温度的变化。剥离粘合性按增粘剂A> B> C的顺序进行。发现增粘剂与基础聚合物的相容性对粘合性能有很强的影响。

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