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首页> 外文期刊>Journal of Applied Polymer Science >Effect of adhesive thickness on the wettability and deformability of polyacrylic pressure-sensitive adhesives during probe tack test
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Effect of adhesive thickness on the wettability and deformability of polyacrylic pressure-sensitive adhesives during probe tack test

机译:探针粘性测试过程中胶粘剂厚度对聚丙烯酸压敏胶粘剂润湿性和变形性的影响

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摘要

Effect of adhesive thickness on the wetting and deformation behaviors during probe tack test of pressure-sensitive adhesive (PSA) was investigated. For this purpose, cross-linked poly(n-butyl acrylate-acrylic acid) [P(BA-AA)] and poly(2-ethylhexyl acrylate-acrylic acid) [P(2EHA-AA)] random copolymers with an acrylic acid content of 5 wt% and thicknesses in the range of approximate to 15-60 m were used. Tack was measured using the probe tack test and the fracture energy was calculated from the areas under force-displacement curve recorded during debonding process. From contact time dependence of fracture energy, the rising rate of fracture energy with contact time increased with increasing of adhesive thickness and was P(2EHA-AA)>P(BA-AA). The fracture energy was P(BA-AA)>P(2EHA-AA) at shorter contact time, whereas it reversed at longer contact time. This was caused by two different interfacial adhesions: the physical wetting of PSA molecules to the adherend surface with contact time and the chemical interaction between the acrylic acid units and the adherend surface. From the force-displacement curve measured under the condition of sufficient interfacial adhesion, both maximum force and displacementnamely, the deformability of PSA during debonding processincreased with adhesive thickness. The degree of increase of deformability was P(2EHA-AA)>P(BA-AA). The fracture energy was found to depend on the development of interfacial adhesion during contacting process and the deformability of PSA during debonding process. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43639.
机译:研究了粘合剂厚度对压敏胶粘剂(PSA)探针粘结试验期间润湿和变形行为的影响。为此,将交联的聚(丙烯酸正丁酯-丙烯酸)[P(BA-AA)]和聚(丙烯酸2-乙基己酯-丙烯酸)[P(2EHA-AA)]与丙烯酸的无规共聚物含量为5 wt%,厚度范围约为15-60 m。使用探针粘性测试测量粘性,并根据脱胶过程中记录的力-位移曲线下的面积计算断裂能。从断裂能的接触时间依赖性来看,随着胶粘剂厚度的增加,断裂能随接触时间的增加速率增加,为P(2EHA-AA)> P(BA-AA)。在较短的接触时间下断裂能为P(BA-AA)> P(2EHA-AA),而在较长的接触时间下断裂能为P(BA-AA)> P(2EHA-AA)。这是由两种不同的界面粘合引起的:PSA分子随着接触时间而物理润湿到粘附体表面,以及丙烯酸单元和粘附体表面之间的化学相互作用。从在充分的界面粘合条件下测得的力-位移曲线,即最大力和位移,即,剥离过程中PSA的可变形性随粘合剂厚度的增加而增加。变形能力的增加程度为P(2EHA-AA)> P(BA-AA)。发现断裂能取决于在接触过程中界面粘附的发展以及在剥离过程中PSA的可变形性。 (c)2016 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,43639。

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