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Development of matte finishes in electrostatic (EFB) and conventional hot dipping (CHDFB) fluidized bed coating process

机译:在静电(EFB)和常规热浸(CHDFB)流化床涂层工艺中开发哑光面漆

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摘要

This study focuses on the correlation between the thermo-rheological properties of a thermosetting powder coating system with its surface structure build-up. Epoxy powder coating systems, which displayed surface matting and surface wrinkling, were examined. Firstly, the evolution of the complex viscosity was correlated with the cure kinetic. Secondly, the structure build-up on the surface of the coatings was investigated with a combined SEM-CLA profilometry analysis at different stages of curing process for both EFB and CHDFB coating processes. Different finishes were found to characterize the films applied by using EFB and CHDFB coating processes as a result of the different way the film is heated by. Finally, a strict relationship of film morphology to the degree of conversion and to the evolution of the complex viscosity was found out for both EFB and CHDFB coating processes. The surface structure is built up after gelation point and continues to evolve after gelation with a full development of the film fine structure. Differences were observed in the surface structure build-up when different curing temperature was used, thereby indicating an influence of minimum viscosity on achievable finishing. These experimental results lead to further advances in a better understanding of the formation of surface topography and morphology of polymeric films. They also provide important indications for the settings of curing parameters in both EFB and CHDFB coating processes as well as for the development of new powder coating formulations. © 2007 Elsevier B.V. All rights reserved.
机译:这项研究的重点是热固性粉末涂料体系的热流变性与其表面结构的建立之间的相关性。检查了显示出表面无光泽和表面起皱的环氧粉末涂料体系。首先,复数粘度的变化与固化动力学有关。其次,在EFB和CHDFB涂层工艺的固化过程的不同阶段,通过组合SEM-CLA轮廓分析法研究了涂层表面上的结构堆积。由于对薄膜进行加热的方式不同,因此发现使用EFB和CHDFB涂层工艺涂覆的薄膜具有不同的表面处理特性。最后,对于EFB和CHDFB涂布方法,发现膜形态与转化度和复数粘度的演变之间存在严格的关系。表面结构在胶凝点后建立,并在胶凝后继续发展,并充分发展了薄膜的细微结构。当使用不同的固化温度时,观察到表面结构堆积的差异,从而表明最小粘度对可获得的整理的影响。这些实验结果在更好地理解聚合物膜的表面形貌和形态方面取得了进一步的进展。它们还为在EFB和CHDFB涂层工艺中设置固化参数以及开发新的粉末涂料配方提供了重要指示。 ©2007 Elsevier B.V.保留所有权利。

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