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ADVANCED TESTING PROCEDURES FOR HIGH PERFORMANCES COATINGS

机译:高性能涂层的高级测试程序

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For industrial applications, it is often required to use protective organic coatings with very high corrosion protection performances and durability. In order to develop organic coatings products with good characteristics it is critical to use testing procedures able to produce quickly reliable results. For this purpose a lot of different testing methods are used in the industrial practice and in the research laboratories, but often the potentials and the limits of the different testing methods are not completely understood. In the first part of this work some organic coatings from automotive production were characterised by using an integrated approach including electrochemical techniques (impedance spectroscopy EIS), calorimetric (differential scanning calorimetry DSC), mechanical (dynamo-mechanical thermal analysis) and infrared spectroscopy (Fourier transfer infrared spectroscopy FTIR). The comparison of the results obtained with different techniques allows, not only a higher precision in the natural or artificial degradation evaluation which is very difficult to obtain by using just traditional technique, but also a better data interpretation and therefore the possibility to understand the different degradation mechanisms. In the second part of the paper are discussed some preliminary results concerning the comparison of salt spray exposure and EIS measurements. The statistical analysis of the results showed that the degradation mechanism in the two cases is completely different and therefore different is also the information which it is possible to obtain with the two testing approaches.
机译:对于工业应用,通常需要使用具有非常高的腐蚀防护性能和耐用性的有机防护涂料。为了开发具有良好特性的有机涂料产品,使用能够快速产生可靠结果的测试程序至关重要。为此目的,在工业实践和研究实验室中使用了许多不同的测试方法,但是常常不能完全理解不同测试方法的潜力和局限性。在这项工作的第一部分中,一些汽车生产的有机涂料的特征是采用了一种综合方法,包括电化学技术(阻抗光谱EIS),量热法(差示扫描量热DSC),机械(动力机械热分析)和红外光谱(傅里叶红外光谱(FTIR)。通过不同技术获得的结果进行比较,不仅可以提高自然或人工降解评估的精度(仅使用传统技术很难获得),而且可以更好地进行数据解释,从而可以了解不同的降解机制。在本文的第二部分中,讨论了有关盐雾暴露和EIS测量结果比较的一些初步结果。结果的统计分析表明,两种情况下的降解机理完全不同,因此两种测试方法所能获得的信息也不同。

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