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Molecular weight and crosslinking on the adhesion performance and flexibility of acrylic PSAs

机译:分子量和交联对丙烯酸PSA粘合性能和柔韧性的影响

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摘要

Acrylic pressure sensitive adhesives (PSAs) are used in the production of flexible displays. Acrylic PSAs must have high flexibility and recovery to meet the industry demands for flexible displays. For these reasons, acrylic PSAs were designed to determine the effects of molecular weight and cross-linking on acrylic PSAs. Stress relaxation and creep tests were measured with dynamic mechanical analysis to identify the flexibility and recovery of the acrylic PSAs. The molecular weight and glass transition temperature of the PSAs were measured by gel permeation chromatography and differential scanning calorimetry. A texture analyzer was used to measure the adhesion performance of the acrylic PSAs. With increasing molecular weight, the adhesion performance increased, especially from 86 to 108 K molecular weight PSAs. This is due to the entanglement of the polymer chains. The stress and recovery of cross-linked acrylic PSAs was much higher than that of neat acrylic PSAs. This result is attributed to interactions between the polymer chains due to cross-linking.
机译:丙烯酸压敏胶(PSA)用于生产柔性显示器。丙烯酸PSA必须具有高度的柔韧性和恢复性,才能满足行业对柔性显示器的需求。由于这些原因,丙烯酸PSA被设计为确定分子量和交联对丙烯酸PSA的影响。应力松弛和蠕变测试通过动态力学分析进行测量,以确定丙烯酸PSA的柔韧性和恢复性。通过凝胶渗透色谱法和差示扫描量热法测量PSA的分子量和玻璃化转变温度。使用质地分析仪测量丙烯酸类PSA的粘合性能。随着分子量的增加,粘合性能提高,尤其是分子量从86 K增加到108K。这是由于聚合物链的缠结。交联丙烯酸类PSA的应力和回复率远高于纯丙烯酸类PSA。该结果归因于由于交联的聚合物链之间的相互作用。

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