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松弛性能对聚异丁烯压敏胶粘剂粘结耐久性的影响

Effect of Relaxation Properties on the Bonding Durability of Polyisobutylene Pressure-Sensitive Adhesives.

作者信息

Vlasova Anna V, Smirnova Nina M, Melekhina Viktoria Y, Antonov Sergey V, Ilyin Sergey O

机构信息

A.V. Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences, 29 Leninsky Prospect, 119991 Moscow, Russia.

出版信息

Polymers (Basel). 2025 Aug 25;17(17):2297. doi: 10.3390/polym17172297.

Abstract

Pressure-sensitive adhesion arises at a specific rheological behavior of polymer systems, which should correlate with their relaxation properties, making them potentially useful for predicting and altering adhesive performance. This work systematically studied the rheology of eco-friendly pressure-sensitive adhesives based on non-crosslinked polyisobutylene ternary blends free of solvents and byproducts, which serve for reversible adhesive bonding. The ratio between individual polymer components differing in molecular weight affected the rheological, relaxation, and adhesion properties of the constituted adhesive blends, allowing for their tuning. The viscosity and viscoelasticity of the adhesives were studied using rotational rheometry, while their adhesive bonds with steel were examined by probe tack and shear lap tests at different temperatures. The adhesive bond durability at shear and pull-off detachments depended on the adhesive composition, temperature, and contact time under pressure. The double differentiation of the continuous relaxation spectra of the adhesives enabled the accurate determination of their characteristic relaxation times, which controlled the durability of the adhesive bonds. A universal linear correlation between the reduced failure time of adhesive bonds and their reduced formation time enabled the prediction of their durability with high precision (Pearson correlation coefficient = 0.958, -value < 0.001) over at least a four-order-of-magnitude time range. The reduction in the formation/failure times of adhesive bonds was most accurately achieved using the longest relaxation time of the adhesives, associated with their highest-molecular-weight polyisobutylene component. Thus, the highest-molecular-weight polymer played a dominant role in adhesive performance, determining both the stress relaxation during the formation of adhesive bonds and their durability under applied load. In turn, this finding enables the prediction and improvement of adhesive bond durability by increasing the bond formation time (a durability rise by up to 10-100 times) and extending the adhesive's longest relaxation time through elevating the molecular weight or proportion of its highest-molecular-weight component (a durability rise by 100-350%).

摘要

压敏粘附性源于聚合物体系的特定流变行为,这种行为应与其松弛特性相关,这使得它们在预测和改变粘附性能方面具有潜在用途。这项工作系统地研究了基于无溶剂和副产物的非交联聚异丁烯三元共混物的环保型压敏胶粘剂的流变学,这些共混物用于可逆粘合。不同分子量的各聚合物组分之间的比例影响了所构成的胶粘剂共混物的流变、松弛和粘附性能,从而可以对其进行调节。使用旋转流变仪研究了胶粘剂的粘度和粘弹性,同时通过在不同温度下的探针粘性和剪切搭接试验来检测它们与钢的粘合。在剪切和剥离分离时的粘合耐久性取决于胶粘剂的组成、温度和压力下的接触时间。胶粘剂连续松弛谱的二阶微分能够准确测定其特征松弛时间,这些松弛时间控制着粘合的耐久性。在至少四个数量级的时间范围内,粘合的缩短失效时间与其缩短形成时间之间的通用线性相关性使得能够高精度地预测其耐久性(皮尔逊相关系数 = 0.958,p值 < 0.001)。使用胶粘剂最长的松弛时间(与其最高分子量的聚异丁烯组分相关)能够最准确地实现粘合形成/失效时间的缩短。因此,最高分子量的聚合物在粘附性能中起主导作用,既决定了粘合形成过程中的应力松弛,也决定了在施加负载下的耐久性。反过来,这一发现使得通过增加粘合形成时间(耐久性提高10 - 100倍)以及通过提高分子量或其最高分子量组分的比例来延长胶粘剂的最长松弛时间(耐久性提高100 - 350%)来预测和提高粘合耐久性成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28a1/12431338/70b5b03c3393/polymers-17-02297-g001.jpg

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