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使用激光对三价铬转化膜进行检测:干涉对冷轧铝的意外作用

Inspection of Trivalent Chromium Conversion Coatings Using Laser Light: The Unexpected Role of Interference on Cold-Rolled Aluminium.

作者信息

Rischmueller Joerg, Toschke Yannic, Imlau Mirco, Schlag Mareike, Brüning Hauke, Brune Kai

机构信息

Department of Physics, Osnabrueck University, Barbarastrasse 7, 49076 Osnabrueck, Germany.

Fraunhofer Institute for Manufacturing Technology and Advanced Materials IFAM, 28359 Bremen, Germany.

出版信息

Sensors (Basel). 2020 Apr 11;20(8):2164. doi: 10.3390/s20082164.

Abstract

Laser-based inspection of trivalent chromium conversion coatings on rough, cold-rolled aluminium substrates is studied from a basic physics perspective by means of angle and wavelength dependent measurements. As a result, we show that the correlation between the scattered laser light and the coating weight of the conversion layer is dominated by the phenomenon of interference. The combined experimental and numerical approach of our study is based on an appropriate layer model which was developed from a set of reference measurements of confocal microscopy, electron microscopy and X-ray photoelectron spectroscopy. The aluminium alloy AA3003 with a trivalent chromium conversion coating serves as an example. Our derived model is capable to reconstruct the reflectance of a laser beam at grazing incidence even for a pronounced surface roughness of R q ≈ 300   n m , for different coating thicknesses less than 70 n m corresponding to coating weights between zero and 0.5 g / m 2 and for laser wavelengths from 405 n m to 785 n m . In our discussion we outline the possibility to transfer the results to other aluminium alloys and/or other metallic substrates, as well as their potential for industrial applications such as 100% inline-capability, costs, velocity and ruggedness.

摘要

从基础物理学角度出发,通过与角度和波长相关的测量,研究了粗糙冷轧铝基板上三价铬转化膜的激光检测。结果表明,散射激光与转化层涂层重量之间的相关性主要由干涉现象主导。我们研究的实验与数值相结合的方法基于一个合适的层模型,该模型是从共聚焦显微镜、电子显微镜和X射线光电子能谱的一组参考测量中开发出来的。以带有三价铬转化膜的AA3003铝合金为例。我们推导的模型能够重建掠入射时激光束的反射率,即使对于Rq≈300 nm的明显表面粗糙度、小于70 nm的不同涂层厚度(对应涂层重量在零至0.5 g/m²之间)以及405 nm至785 nm的激光波长。在讨论中,我们概述了将结果转移到其他铝合金和/或其他金属基板的可能性,以及它们在工业应用中的潜力,如100%在线检测能力、成本、速度和耐用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2779/7218743/35944f7d232c/sensors-20-02164-g0A1.jpg

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