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首页> 外文期刊>International Journal of Adhesion & Adhesives >Contact time dependence of tack for crosslinked polyacrylic pressure-sensitive adhesives with two different molecular structures
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Contact time dependence of tack for crosslinked polyacrylic pressure-sensitive adhesives with two different molecular structures

机译:具有两种不同分子结构的交联聚丙烯酸酯压敏胶的粘性接触时间依赖性

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摘要

The influence of molecular structure of pressure-sensitive adhesive on the wetting to adherend surface was investigated. For this purpose, crosslinked poly(n-butyl acrylate-acrylic acid) (A) and poly(2-ethylhexyl acrylate-acrylic acid) random copolymer (B) with an acrylic acid content of 5 wt% and various crosslinking degrees were used. Tack was measured by a probe tack test with a debonding rate of 10 mm/s and various contact times ranging from 3 to 30,000 s. The probe was made of stainless steel (SS). The tack increased with contact time and the degree of tack rising was B > A. The tack was A > B below the contact time of about 100 s, whereas it was B > A above 100 s. The order of molecular mobility was B > A from pulse nuclear magnetic resonance analysis, so the wettability to adherend surface became B > A. This is the reason why tack was B > A above 100 s. The interfacial tension at a water/toluene interface was decreased more effectively by A than B. This result indicates that the acrylic acid unit in A forms the interaction with the high energy surface such as SS in short contact time. The 2-ethylhexyl group is bulker than the n-butyl group. The bulky group promotes steric hindrance for the interaction of the acrylic acid unit. This seems to be the reason why tack was A > B below 100 s. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了压敏胶粘剂的分子结构对润湿被粘物表面的影响。为此,使用丙烯酸含量为5重量%且具有各种交联度的交联的聚(丙烯酸正丁酯-丙烯酸)(A)和聚(丙烯酸2-乙基己酯-丙烯酸)无规共聚物(B)。通过探针粘性测试以10 mm / s的剥离速度和3至30,000 s的各种接触时间来测量粘性。探头由不锈钢(SS)制成。粘性随接触时间而增加,粘性上升程度为B>A。在约100 s的接触时间以下,粘性为A> B,而在100 s以上的粘性为B>A。根据脉冲核磁共振分析,分子迁移率的顺序为B> A,因此对被粘物表面的润湿性变为B>A。这就是在100 s以上时粘性为B> A的原因。 A比B更有效地降低了水/甲苯界面的界面张力。该结果表明,A中的丙烯酸单元在短时间内与高能表面(如SS)形成了相互作用。 2-乙基己基比正丁基大。庞大的基团促进了对丙烯酸单元的相互作用的位阻。这似乎是粘性低于100 s时A> B的原因。 (C)2015 Elsevier Ltd.保留所有权利。

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