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A comparison between destructive and non-destructive techniques in determining coating thickness

机译:测定涂层厚度的破坏性和非破坏性技术的比较

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Measuring coating thickness is an important part in research works related to coating applications. In general, techniques for measuring coating thickness may be divided into destructive and non-destructive methods which are commonly used depending on the applications. The objective of this study is to compare two methods measuring the coating thickness of electroplating copper coating on the austenitic stainless-steel substrate. The electroplating was carried out in a solution containing 200 g/L CuSO4, 100 g/L H2SO4 at room temperature and current of 40mA/cm~2 during 20,40,60,80 and 100 mins as coating periods. And the coating thickness was measured by two methods, cross sectional analysis as a destructive technique and weight gain as a non-destructive technique. The results show that at 20 mins coating time interval, the thickness measured by cross sectional method was 16.67 μn and by weight gain method was 17.37 μm, with difference of 0.7 μm and percentage error of 4.11%. This error increased to 5.27% at 100mins time interval, where the values of the thickness measured by cross sectional and weight gain were 86.33 μm and 81.9 μm respectively, and the difference was 4.43 μm. Moreover, though the weight gain method is fast and gives the indication for the termination of a coating process, information regarding the uniformity, porosity and the presence of cracks cannot be obtained. On the other hand, determining the coating thickness using destructive method will damage the sample.
机译:测量涂层厚度是与涂层应用有关的研究工作中的重要组成部分。通常,用于测量涂层厚度的技术可以分为破坏性和非破坏性方法,这通常根据应用而常用。本研究的目的是比较两种测量奥氏体不锈钢基板上电镀铜涂层涂层厚度的方法。电镀在室温下在含有200g / l cuso4,100g / L H 2 SO 4的溶液中进行,在20,40,80,80和100分钟的40mA / cm〜2的电流中作为涂层时期。通过两种方法测量涂层厚度,横截面分析作为破坏性技术和重量增益作为非破坏性技术。结果表明,在20分钟的涂布时间间隔,通过横截面方法测量的厚度为16.67μN,重量增益法为17.37μm,差异为0.7μm,百分比误差为4.11%。该误差在100分钟的时间间隔增加到5.27%,其中横截面和重量增益测量的厚度的值分别为86.33μm和81.9μm,差异为4.43μm。此外,尽管重量增益方法快速并赋予涂覆过程终止的指示,但不能获得关于均匀性,孔隙率和裂缝的存在的信息。另一方面,使用破坏性方法确定涂层厚度将损坏样品。

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