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连续在线铬层厚度测量方法学:当前和潜在技术的研究。

Continuous In-Line Chromium Coating Thickness Measurement Methodologies: An Investigation of Current and Potential Technology.

机构信息

Wireless and Optoelectronic Research and Innovation Centre, University of South Wales, Treforest CF37 1DL, UK.

Tata Steel, Research and Development, Swansea Technology Centre, Swansea SA2 8PP, UK.

出版信息

Sensors (Basel). 2021 May 11;21(10):3340. doi: 10.3390/s21103340.

Abstract

Coatings or films are applied to a substrate for several applications, such as waterproofing, corrosion resistance, adhesion performance, cosmetic effects, and optical coatings. When applying a coating to a substrate, it is vital to monitor the coating thickness during the coating process to achieve a product to the desired specification via real time production control. There are several different coating thickness measurement methods that can be used, either in-line or off-line, which can determine the coating thickness relative to the material of the coating and the substrate. In-line coating thickness measurement methods are often very difficult to design and implement due to the nature of the harsh environmental conditions of typical production processes and the speed at which the process is run. This paper addresses the current and novel coating thickness methodologies for application to chromium coatings on a ferro-magnetic steel substrate with their advantages and limitations regarding in-line measurement. The most common in-line coating thickness measurement method utilized within the steel packaging industry is the X-ray Fluorescence (XRF) method, but these systems can become costly when implemented for a wide packaging product and pose health and safety concerns due to its ionizing radiation. As technology advances, nanometer-scale coatings are becoming more common, and here three methods are highlighted, which have been used extensively in other industries (with several variants in their design) which can potentially measure coatings of nanometer thickness in a production line, precisely, safely, and do so in a non-contact and non-destructive manner. These methods are optical reflectometry, ellipsometry and interferometry.

摘要

涂层或薄膜应用于基底,具有多种用途,例如防水、耐腐蚀、附着力、美容效果和光学涂层。在将涂层应用于基底时,至关重要的是在涂层过程中监测涂层厚度,以通过实时生产控制达到所需产品规格。有几种不同的涂层厚度测量方法,无论是在线还是离线,都可以确定涂层相对于涂层材料和基底的厚度。由于典型生产过程的恶劣环境条件和运行速度,在线涂层厚度测量方法的设计和实施往往非常困难。本文针对应用于铁磁钢基底上的铬涂层的当前和新型涂层厚度方法进行了研究,讨论了它们在在线测量方面的优缺点。在钢铁包装行业中,最常用的在线涂层厚度测量方法是 X 射线荧光(XRF)方法,但当将其应用于广泛的包装产品时,这些系统可能会变得昂贵,并且由于其电离辐射,会带来健康和安全问题。随着技术的进步,纳米级涂层变得越来越普遍,这里重点介绍了三种方法,它们在其他行业中得到了广泛应用(其设计有几种变体),这些方法可以在生产线上精确、安全地测量纳米级厚度的涂层,并且采用非接触式和非破坏性的方式。这些方法是光学反射率法、椭偏法和干涉法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12db/8151628/2668758cfccb/sensors-21-03340-g001.jpg

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