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首页> 外文期刊>International Journal of Adhesion & Adhesives >About the influence of a water-based priming system on the interactions between wood and one-component polyurethane adhesive studied by atomic force microscopy and confocal Raman spectroscopy imaging
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About the influence of a water-based priming system on the interactions between wood and one-component polyurethane adhesive studied by atomic force microscopy and confocal Raman spectroscopy imaging

机译:关于水性灌注系统对原子力显微镜和辅助拉曼光谱成像研究的木材和单组分聚氨酯粘合剂的相互作用

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摘要

In recent years one-component polyurethane (1C-PUR) adhesives have been increasingly applied in loadbearing timber constructions. However, a low wood fracture percentage at wet stage and a comparatively low performance in delamination tests need to be overcome to fulfill certain technical standards and to achieve an even higher acceptance in the global market of wood adhesives. Via the use of suitable primers, in this case a water-soluble primer (WSP) system, it is possible to significantly improve these parameters. Nevertheless, the exact mode of action of the primer remains so far unclear. In this study, primer treated wood surfaces were characterized in detail by atomic force microscopy (AFM) and the influence of the primer on the penetration of the 1C-PUR adhesive into wood cell walls was further analyzed by confocal Raman spectroscopy imaging. AFM investigations of primer treated surfaces reveal a significant increase in adhesion compared to non-primer treated surfaces and indicate a penetration of the primer into the cell wall. However, Raman spectroscopy shows that the primer application does not lead to a substantial and deep penetration of the 1C-PUR adhesive into wood cell walls. Slight changes in the spectral properties of the primer treated samples at the interface between the bond line and the adjacent cell wall, point towards changed interactions between wood and polyurethane.
机译:近年来,一组分聚氨酯(1C-PUR)粘合剂越来越多地应用于负载木材结构中。然而,需要克服湿阶段的低木质骨折百分比和在分层测试中的相对低的性能,以满足某些技术标准,并在全球木材粘合剂市场中达到更高的接受。通过使用合适的引物,在这种情况下,水溶性引物(WSP)系统,可以显着改善这些参数。然而,底漆的确切作用模式仍然尚不清楚。在该研究中,通过同学拉曼光谱成像进一步分析了由原子力显微镜显微镜(AFM)详细描述了引物处理的木表面,并通过共焦拉曼光谱成像进一步分析了引物对1C-PUR粘合剂对木细胞壁的渗透到木细胞壁上的影响。与非引物处理表面相比,底漆处理表面的AFM调查显示出粘附的显着增加,并表明底漆渗透到细胞壁中。然而,拉曼光谱表明,引物施加不会导致1C-PUR粘合剂的大幅度和深入渗透到木细胞壁中。引物处理样品的光谱特性在粘接线和相邻细胞壁之间的界面处的光谱特性变化,指向木材和聚氨酯之间的改变相互作用。

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