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1K聚氨酯胶粘剂在埋入界面处的分子行为:等离子体处理、退火与粘附

Molecular Behavior of 1K Polyurethane Adhesive at Buried Interfaces: Plasma Treatment, Annealing, and Adhesion.

作者信息

Wu Yuchen, Wang Tianle, Gao Jinpeng, Zhang Lu, Fay Jonathan D B, Hirth Sabine, Hankett Jeanne, Chen Zhan

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States.

Department of Macromolecular Science and Engineering, University of Michigan, Ann Arbor, Michigan 48109, United States.

出版信息

Langmuir. 2023 Mar 7;39(9):3273-3285. doi: 10.1021/acs.langmuir.2c03084. Epub 2023 Feb 21.

Abstract

One-part (1K) polyurethane (PU) adhesive has excellent bulk strength and environmental resistance. It is therefore widely used in many fields, such as construction, transportation, and flexible lamination. However, when contacting non-polar polymer materials, the poor adhesion of 1K PU adhesive may not be able to support its outdoor applications. To solve this problem, plasma treatment of the non-polar polymer surface has been utilized to improve adhesion between the polymer and 1K PU adhesive. The detailed mechanisms of adhesion enhancement of the 1K PU adhesive caused by plasma treatment on polymer substrates have not been studied extensively because adhesion is a property of buried interfaces which are difficult to probe. In this study, sum frequency generation (SFG) vibrational spectroscopy was used to investigate the buried PU/polypropylene (PP) interfaces in situ nondestructively. Fourier-transform infrared spectroscopy, the X-ray diffraction technique, and adhesion tests were used as supplemental methods to SFG in the study. The 1K PU adhesive is a moisture-curing adhesive and usually needs several days to be fully cured. Here, time-dependent SFG experiments were conducted to monitor the molecular behaviors at the buried 1K PU adhesive/PP interfaces during the curing process. It was found that the PU adhesives underwent rearrangement during the curing process with functional groups gradually becoming ordered at the interface. Stronger adhesion between the plasma-treated PP substrate and the 1K PU adhesive was observed, which was achieved by the interfacial chemical reactions and a more rigid interface. Annealing the samples increased the reaction speed and enhanced the bulk PU strength with higher crystallinity. In this research, molecular mechanisms of adhesion enhancement of the 1K PU adhesive caused by the plasma treatment on PP and by annealing the PU/PP samples were elucidated.

摘要

单组分(1K)聚氨酯(PU)胶粘剂具有优异的整体强度和耐环境性。因此,它被广泛应用于许多领域,如建筑、运输和软质层压。然而,当与非极性聚合物材料接触时,1K PU胶粘剂较差的粘附力可能无法支持其户外应用。为了解决这个问题,人们利用对非极性聚合物表面进行等离子体处理来提高聚合物与1K PU胶粘剂之间的粘附力。由于粘附力是难以探测的埋藏界面的一种特性,因此关于等离子体处理聚合物基材对1K PU胶粘剂粘附力增强的详细机制尚未得到广泛研究。在本研究中,和频振动光谱被用于原位无损研究埋藏的PU/聚丙烯(PP)界面。傅里叶变换红外光谱、X射线衍射技术和粘附力测试被用作本研究中和频振动光谱的补充方法。1K PU胶粘剂是一种湿气固化型胶粘剂,通常需要几天时间才能完全固化。在此,进行了随时间变化的和频振动光谱实验,以监测固化过程中埋藏的1K PU胶粘剂/PP界面处的分子行为。结果发现,PU胶粘剂在固化过程中发生了重排,官能团在界面处逐渐变得有序。观察到经等离子体处理的PP基材与1K PU胶粘剂之间的粘附力更强,这是通过界面化学反应和更刚性的界面实现的。对样品进行退火处理提高了反应速度,并提高了PU整体强度和结晶度。在本研究中,阐明了等离子体处理PP以及对PU/PP样品进行退火处理导致1K PU胶粘剂粘附力增强的分子机制。

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