首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Raman and XPS depth profiling technique to investigate the corrosion behavior of FeSiAl alloy in salt spray environment
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Raman and XPS depth profiling technique to investigate the corrosion behavior of FeSiAl alloy in salt spray environment

机译:拉曼和XPS深度分析技术研究盐雾环境中瘘合金的腐蚀行为

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As a promising material for electromagnetic microwave absorption, FeSiAl (FSA) alloy always suffers from inadequate corrosion resistance in the marine environment. Herein, the Raman and X-ray photoelectron spectroscopy (XPS) depth profiling techniques are adopted to investigate the basic corrosion behavior of FSA in salt spray environment. The Raman analysis contributes to the understanding of the composition change at various corrosive periods while the XPS depth profiling reveals the corrosion process of Fe-0 -> Fe2+-> Fe3+ in a sequence. The observed corrosion rates (CRs) of FSA immersed in 5 wt% NaCl solution for 1, 24 and 48 h are 2.99 x 10(-12), 4.90 x 10(-12) and 5.85 x 10(-12) m/s, respectively. The increasing value of CRs as a function of time demonstrates the accelerated corrosion tendency. Moreover, to suppress the corrosive behavior of FSA alloy, carbon is decorated on its surface by catalytic chemical vapor deposition method using acetylene as the carbon source. The carbon coating restrains the corrosion process by impermeability and hydrophobicity of carbon materials in corrosive mediums. This study will help in the designing of microwave absorbers which can resist corrosion in harsh reaction conditions as well as available at commercial level to save the economy. (c) 2020 Elsevier B.V. All rights reserved.
机译:作为电磁微波吸收的有希望的材料,雌性(FSA)合金总仍然遭受海洋环境中的耐腐蚀性不足。这里,采用拉曼和X射线光电子能谱(XPS)深度分析技术来研究盐雾环境中FSA的基本腐蚀行为。拉曼分析有助于了解各种腐蚀时期的组成变化,而XPS深度分析揭示了序列中Fe-0 - > Fe2 + - > Fe3 +的腐蚀过程。浸入5wt%NaCl溶液中的观察到的腐蚀速率(Crs)1,24和48 h为2.99×10(-12),4.90×10(-12)和5.85×10(-12)m / s , 分别。随着时间的推移,Crs的增加值证明了加速的腐蚀趋势。此外,为了抑制FSA合金的腐蚀性,通过催化化学气相沉积方法用乙炔作为碳源在其表面上装饰碳。碳涂层通过腐蚀性介质中的碳材料的不透毛和疏水性限制腐蚀过程。本研究将有助于设计微波吸收剂,可抵抗恶劣的反应条件下的腐蚀,以及商业水平以挽救经济。 (c)2020 Elsevier B.v.保留所有权利。

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