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Tailoring the near-Surface Composition Profiles of Pressure-Sensitive Adhesive Films and the Resulting Mechanical Properties

机译:量身定制压敏胶膜的近表面成分分布图及其产生的机械性能

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We present a possibility of tailoring the near-surface composition profiles of pressure sensitive adhesive (PSA) films by an exposure to atmospheres of different relative humidities (RHs). The statistical copolymer P(EHA-stat-20MMA) with a majority of ethylhexylacrylate (EHA) and a minority of methylmethacrylate (MMA), being cast from a toluene based solution, is chosen as a model system. The near-surface composition profile is probed with X-ray reflectivity. All probed samples show an enrichment of PMMA at the sample surface; however, the near-surface PMMA content strongly increases with increasing RH. The influence of the RH on the composition profile is present down to a depth of 50 nm. Therefore the surface tensions being derived from contact angle measurements do not show any measurable humidity dependence. In contrast, in a mechanical tack test with a smooth punch surface, a strong influence is probed. This observation can be explained by considering the integrated PMMA content over an appropriate near-surface region and the resulting impact on the cavitation process.
机译:我们提出了通过暴露于不同相对湿度(RHs)的大气来定制压敏胶粘剂(PSA)膜的近表面成分分布的可能性。选择由甲苯基溶液浇铸的统计共聚物P(EHA-stat-20MMA)与大部分丙烯酸乙基己酯(EHA)和少数甲基丙烯酸甲酯(MMA)。用X射线反射率探测近表面成分分布。所有探查的样品在样品表面均显示出PMMA的富集。但是,随着RH的增加,近表面的PMMA含量会大大增加。 RH对成分分布的影响一直存在到50 nm的深度。因此,从接触角测量得出的表面张力没有显示任何可测量的湿度依赖性。相反,在具有光滑冲头表面的机械粘性测试中,会发现有很大的影响。可以通过考虑适当的近表面区域上的PMMA含量及其对气穴过程的影响来解释这一发现。

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