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首页> 外文期刊>The Korean journal of chemical engineering >Thermal properties and curing kinetics of epoxy powder coatings containing graphene nanoplatelets
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Thermal properties and curing kinetics of epoxy powder coatings containing graphene nanoplatelets

机译:含石墨烯纳米纳薄物的环氧粉末涂料的热性能和固化动力学

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摘要

Graphene nanoplatelets (GNP) have excellent properties, such as high mechanical strength and good thermal conductivity, making them interesting nanofiller for their application in powder coatings. In this context, the aim of this study was to evaluate the thermal behavior and the curing kinetics of epoxy powder coatings containing GNP. The coatings were obtained by mixing in a ball mill followed by homogenization in molten state. The GNP were dispersed directly into the epoxy powder. The morphology, thermal stability and curing kinetics of the samples were evaluated. During the curing process, the GNP accelerated the onset of the reaction but ultimately caused steric impediment. From the results, the GNP incorporated to the solid epoxy resin for coatings behaved differently in each stage of the curing process. In general, while the direct dispersion of GNP in powder epoxy by dry mixing methods was not ideal, the thermal properties were improved, with GNP inducing a poor curing state where diffusion phenomena are predominant.
机译:石墨烯纳米片(GNP)具有优异的性能,例如高机械强度和良好的导热性,使其成为其在粉末涂料中的应用。在这种情况下,本研究的目的是评估含有GNP的环氧粉末涂料的热行为和固化动力学。通过在球磨机中混合,然后在熔融状态下均匀化获得涂层。将GNP直接分散到环氧粉末中。评估样品的形态,热稳定性和固化动力学。在固化过程中,GNP加速了反应的开始,但最终引起了空间障碍。从结果中,在固化过程的每个阶段,GNP掺入用于涂层的固体环氧树脂的涂层不同。通常,虽然GNP在通过干混合方法的粉末环氧树脂中的直接分散不理想的同时,改善了热性质,而GNP诱导差的固化状态,其中扩散现象是主要的。

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