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Adhesion properties of polyurethane pressure-sensitive adhesive

机译:聚氨酯压敏胶的粘合性能

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摘要

In this study, the adhesion properties of polyurethane (PUR) pressure-sensitive adhesive (PSA) were investigated. The PUR-PSA was prepared by the cross-linking reaction of a urethane polymer consisting of toluene-2,4-diisocyanate and poly(propylene glycol) components using polyisocyanate as a cross-linking agent. The peel strength increased with the cross-linking agent content and exhibited cohesive failure until the maximum value, after which it decreased with interfacial failure. The PUR-PSA exhibited frequency dependence of the storage modulus obtained from dynamic viscoelastic measurements, but did not show dependence of the tack on the rolling rate measured using a rolling cylinder tack test under the experimental conditions used, which is quite different from the acrylic block copolymer/tackifier system. The PUR-PSA showed strong contact time dependence of tack measured by a probe tack test. The tendency was significantly larger than for the acrylic block copolymer/tackifier system. Therefore, the storage modulus increased, whereas the interfacial adhesion seems to be decreased with increase in the rolling rate for this PUR-PSA system. It was estimated that the influence of rolling rate on the interfacial adhesion and the storage modulus was offset, and, as a result, the rolling cylinder tack did not exhibit rate dependency.
机译:在这项研究中,研究了聚氨酯(PUR)压敏胶粘剂(PSA)的粘合性能。通过使用聚异氰酸酯作为交联剂,使由甲苯-2,4-二异氰酸酯和聚丙二醇组分组成的聚氨酯聚合物发生交联反应,制备PUR-PSA。剥离强度随交联剂含量的增加而增加,并表现出内聚破坏性直至最大值,此后随着界面破坏性下降。 PUR-PSA表现出通过动态粘弹性测量获得的储能模量的频率依赖性,但在使用的实验条件下使用滚压式滚筒粘着力试验测得的粘着度对轧制速度的依赖性不明显,这与丙烯酸类嵌段料完全不同共聚物/增粘剂体系。通过探针粘性测试测得,PUR-PSA对粘性的接触时间具有很强的依赖性。该趋势明显大于丙烯酸嵌段共聚物/增粘剂体系的趋势。因此,该PUR-PSA系统的储能模量增加,而界面粘合力似乎随着轧制速度的增加而降低。据估计,轧制速度对界面粘合性和储能模量的影响被抵消,结果,轧制滚筒的粘性不表现出速率依赖性。

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