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Development of smooth finishes in electrostatic fluidized bed (EFB) coating process of high-performance thermoplastic powders (PPA 571 H)

机译:在高性能热塑性粉末(PPA 571 H)的静电流化床(EFB)涂层工艺中开发出光滑的面漆

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摘要

This paper deals with the analysis of the evolution of the surface morphology of metal substrates coated with high-performance thermoplastic powders, namely PPA 571 H, by using electrostatic fluidized bed (EFB) process. Attention has been particularly focused on the relationship between baking time and temperature of EFB coated substrates and the morphological characteristics of the resulting polymeric films. First, thermal behaviour of PPA 571 H polymeric powders was characterized by using standard calorimetric techniques. Accordingly, PPA 571 H melting kinetic was experimentally deduced. Based upon experimental findings, predictive analytical model was also developed and employed to trace 'iso-conversion' curves out. Second, metal substrates, made from low carbon steel (AISI 1040), were EFB coated and baked at several baking time and temperatures. Combined analyses of scanning electron and confocal microscopes were led to measure the evolution of the films surface morphology under different baking conditions. Accordingly, a relationship between film morphologies and melting degree was sought. Consistent trends of roughness parameters versus baking parameters were found, with smoother finishes of the polymeric films being achieved for higher degrees of melting, that is, for higher baking temperature and time. Full maps and related analytical models of the finishing levels according to baking parameters were also built up, hence providing first useful indications to powder coaters on how to best deal with their settings. © 2006 Elsevier B.V. All rights reserved.
机译:本文利用静电流化床(EFB)工艺分析了涂有高性能热塑性粉末(即PPA 571 H)的金属基材的表面形态演变。特别关注的是烘烤时间和EFB涂覆的基材的温度与所得聚合物膜的形态特征之间的关系。首先,通过使用标准量热技术来表征PPA 571 H聚合物粉末的热行为。因此,通过实验推导了PPA 571 H的熔融动力学。基于实验结果,还开发了预测分析模型并将其用于跟踪“等转换”曲线。其次,对由低碳钢(AISI 1040)制成的金属基材进行EFB涂层,并在几个烘烤时间和温度下烘烤。结合扫描电子显微镜和共聚焦显微镜进行分析,以测量在不同烘烤条件下薄膜表面形态的演变。因此,寻求膜形态与熔融度之间的关系。发现粗糙度参数相对于烘烤参数的一致趋势,对于更高的熔融度,即,对于更高的烘烤温度和时间,实现了聚合物膜的更光滑的光洁度。还建立了根据烘烤参数的精加工水平的全图和相关分析模型,从而为粉末涂料机提供了有关如何最好地处理其设置的第一个有用的指示。 ©2006 Elsevier B.V.保留所有权利。

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