Development and characterization of repeating macro and micro geometric surface features on plain carbon steel using chemical etching

Isra Tariq, Fatima Maryum, Maheen Fazal, H. Shams, M. N. Qureshi
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Abstract

PDF This paper investigates the use of chemical etching to develop repeating macro and micro geometric surface features on plain carbon steel. Important properties can be imparted in a material by the use of these surface features or textures leading to enhanced corrosion resistance in plain carbon steels. Maskant perforated with pinholes combined with standard chemical etching methods was used to create repeating features on the sample’s surface. Surface characterization was carried out using optical materials analysis microscopy and dynamic-mode imaging using an Atomic Force Microscope. Surface profiles were evaluated based on their center-to-center distance, surface topography and average surface roughness. Comparison with control sample revealed the effects of chemical etching in terms of changes in the average surface roughness and surface topography. Limitations were observed in the control of etchant flow to sample’s surface. However, the results were significant in refinement of the chemical etching methodology for this application.
化学刻蚀法在普通碳钢表面上重复宏观和微观几何特征的研究与表征
本文研究了利用化学蚀刻技术在普通碳钢表面上形成重复的宏观和微观几何表面特征。通过使用这些表面特征或纹理,可以赋予材料重要的性能,从而增强普通碳钢的耐腐蚀性。结合标准的化学蚀刻方法,在样品表面形成重复的特征。利用光学材料分析显微镜和原子力显微镜进行了表面表征。根据中心到中心距离、表面形貌和平均表面粗糙度对表面轮廓进行评估。通过与对照样品的比较,揭示了化学腐蚀对平均表面粗糙度和表面形貌的影响。在控制蚀刻剂流向样品表面方面存在局限性。然而,结果是显著的改进化学蚀刻方法为这一应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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