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Scratch tests to contribute designing performance maps of multilayer polymeric coatings

机译:划痕测试有助于设计多层聚合物涂料的性能图

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The scratching technique has gained interest in recent times because of the numerous inherent properties implied (adherence, hardness, elasticity, visco-elasticity, cohesion, etc.) during tests. Some singular mechanical responses have been noticed (cyclical slips and unsticking, degradation modes, etc.) and valued on multilayers polymeric coatings. The results allow differentiating them and illustrating the mare resistance for part. Scratch test is identified as one of the most efficient to build coating performance maps. The main purpose of our work related to the characterization of multilayers polymeric coatings, is to determine a set of experiments in order to compare their mar resistance. Experiments are made by indentation (hardness, creep, stress relaxation), scratch test (determination of the critical load), glossy reflection and wear. In this paper we describe the scratch experiments used to compare the mar resistance of the coatings. The parameters recorded are used to build a performance map relative to a specimen and this performance map is used to compare all characteristics of different multilayers coatings. Two organic systems are taken as samples to illustrate it. They are composed of three layers with a common steel sheet substrate and a common PET topcoat. The intermediary layer is soft and thick for the first product while it is hard and thin for the second one. The scratch results combined with other test results in performances maps underline the role of an intermediary layer in order finally to better design multilayer polymeric coatings.
机译:由于在测试过程中隐含了许多固有特性(附着力,硬度,弹性,粘弹性,内聚力等),因此刮擦技术近来引起了人们的兴趣。已经注意到一些奇异的机械响应(周期性滑移和不粘,降解模式等),并在多层聚合物涂层上得到了重视。结果可以区分它们,并说明零件的抗母马性。划痕测试被认为是建立涂层性能图的最有效方法之一。我们与多层聚合物涂层表征有关的工作的主要目的是确定一组实验,以比较其耐擦伤性。通过压痕(硬度,蠕变,应力松弛),划痕测试(确定临界载荷),光滑的反射和磨损进行实验。在本文中,我们描述了用于比较涂层耐擦伤性的划痕实验。记录的参数用于建立相对于样品的性能图,该性能图用于比较不同多层涂料的所有特性。以两种有机体系为例进行说明。它们由三层组成,具有共同的钢板基材和共同的PET面漆。对于第一种产品,中间层柔软而厚实,而对于第二种产品,中间层又硬又薄。划痕结果与性能图中的其他测试结果相结合,突显了中间层的作用,以便最终更好地设计多层聚合物涂层。

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