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Epoxy-based thermosetting powder coatings: Surface appearance, scratch adhesion and wear resistance

机译:环氧树脂基热固性粉末涂料:表面外观,刮擦附着力和耐磨性

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摘要

The deposition of protective coatings from thermosetting polymer powders is undergoing rapid growth as an ecological, economic and energy-efficient technology. Nevertheless, a combination of conflicting needs is characterizing new formulations: (i) minimization of premature crosslinking during material production and storage; (ii) film levelling and cross-linking at the lowest possible temperature in the least possible time. We address the problem by developing an experimental study in which the evolution of film morphology and its thermal, rheological, mechanical and tribological properties are analyzed in the light of film baking time and temperature. Experimental results show that smooth films can be achieved at relatively low baking time and temperature, while film mechanical performances are not yet fully developed. In contrast, good film strength, adhesion and wear endurance can be attained, only if longer baking time or higher temperature is set. However, a generalized scratch map, which correlates the adhesion strength of the polymeric films with the thermorheological behaviour of the base material, has been also built. Our results open up the possibility of predicting best baking programs and how full film performances are progressively established with time and temperature by better understanding of the mechanisms involved in polymeric films formation from loose powders. (C) 2007 Elsevier B.V. All rights reserved.
机译:作为一种生态,经济和节能技术,由热固性聚合物粉末沉积的保护涂层正在迅速发展。尽管如此,矛盾的需求共同构成了新配方的特征:(i)在材料生产和储存过程中尽量减少过早交联; (ii)在尽可能短的时间内在尽可能低的温度下进行流平和交联。我们通过开展一项实验研究来解决这个问题,在该实验研究中,根据膜的烘烤时间和温度来分析膜形态的演变及其热,流变,机械和摩擦学性能。实验结果表明,在相对较低的烘烤时间和温度下可以获得光滑的薄膜,而薄膜的机械性能尚未得到充分发展。相反,只有设定更长的烘烤时间或更高的温度,才能获得良好的薄膜强度,附着力和耐磨性。然而,还建立了将聚合物膜的粘合强度与基材的热流变行为相关联的广义划痕图。通过更好地了解由松散粉末形成聚合物膜的机理,我们的结果为预测最佳烘烤程序以及随时间和温度逐步建立完整膜性能提供了可能性。 (C)2007 Elsevier B.V.保留所有权利。

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