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大气湿度对异氰酸酯基底漆表面分子行为的影响研究

Investigation of the Atmospheric Moisture Effect on the Molecular Behavior of an Isocyanate-Based Primer Surface.

作者信息

Zhang Shuqing, Hsu Lorraine, Toolis Amy, Li Bolin, Zhou Jukai, Lin Ting, Chen Zhan

机构信息

Coatings and Innovation Center, PPG, 4325 Rosanna Drive, Allison Park, Pennsylvania 15101, United States.

出版信息

Langmuir. 2021 Nov 2;37(43):12705-12713. doi: 10.1021/acs.langmuir.1c02135. Epub 2021 Oct 20.

Abstract

A primer coating is engineered to facilitate compatibility between products like adhesives, sealants, and potting compounds and targeted substrates. Prolonged exposure of isocyanate-based primer surfaces to the environment is known to negatively affect the interfacial adhesion between itself and the products subsequently applied on top of it. However, the molecular behavior behind this observed phenomenon remained to be further investigated. In this study, sum frequency generation (SFG) vibrational spectroscopy, a nonlinear optical spectroscopic technique, was applied to study the surface of an isocyanate-based primer exposed to different environments at the molecular level. Atmospheric moisture was considered to be a potential factor in impairing the adhesion performance of the primer, and thus, time- and humidity-dependent experiments were executed to monitor the molecular behavior at the primer surface using SFG. In addition, 180° peel testing experiments were conducted to measure the adhesion properties of primers after being exposed to the corresponding conditions to correlate to SFG results and establish a chemical structure-macroscopic performance relationship. This study on the changes at the primer surface in different environments with varied humidity levels as a function of time aims to provide an in-depth understanding of the moisture effect on isocyanate-based primers. These learnings may also be helpful toward exploring a broader range of coatings and surface layers and improving customer product use guidelines.

摘要

底漆涂层的设计目的是促进胶粘剂、密封剂和灌封化合物等产品与目标基材之间的兼容性。已知异氰酸酯基底漆表面长时间暴露在环境中会对其自身与随后涂覆在其上的产品之间的界面附着力产生负面影响。然而,这一观察到的现象背后的分子行为仍有待进一步研究。在本研究中,采用和频振动光谱(SFG)这一非线性光学光谱技术,在分子水平上研究暴露于不同环境的异氰酸酯基底漆的表面。大气湿度被认为是损害底漆附着力性能的一个潜在因素,因此,进行了时间和湿度相关的实验,以使用SFG监测底漆表面的分子行为。此外,进行了180°剥离测试实验,以测量底漆在暴露于相应条件后的附着力性能,从而与SFG结果相关联,并建立化学结构与宏观性能的关系。这项关于底漆表面在不同环境中随时间变化的湿度水平变化的研究旨在深入了解湿度对异氰酸酯基底漆的影响。这些研究结果也可能有助于探索更广泛的涂层和表面层,并改进客户产品使用指南。

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