Current status and development trends of corrosion research in Fe-based amorphous alloys

IF 3.9 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Cong Li, Zhaoyuan Zhang, Jiahui Qian, Yan Shi, Jinzhe Li
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引用次数: 0

Abstract

The importance of Fe-based amorphous alloys in the field of corrosion is gradually being recognized due to their unique disordered atomic arrangement and superior corrosion resistance. As a promising new type of highly corrosion-resistant alloy, recent studies have shown that Fe-based amorphous alloys have a uniform composition and structure. Despite the absence of defects such as grain boundaries and segregation that promote corrosion in crystalline alloys, their application is still influenced by environmental corrosion. This paper introduces the recent development of Fe-based amorphous alloys for the first time and provides an overview of the current research on the preparation and corrosion behavior of Fe-based amorphous alloys. It first discusses in detail the preparation methods for ribbon, powder, and bulk forms of Fe-based amorphous alloys and then investigates the influence of factors such as composition regulation, structural state, and corrosive media on the corrosion resistance of these alloys. Finally, it discusses the existing issues and future development trends in the application of Fe-based amorphous alloys in corrosion resistance research.

铁基非晶合金腐蚀研究现状及发展趋势
铁基非晶合金由于其独特的无序原子排列和优异的耐蚀性,在腐蚀领域的重要性逐渐被人们认识。近年来的研究表明,铁基非晶合金具有均匀的成分和组织,是一种很有前途的新型高耐蚀合金。尽管晶体合金中没有晶界和偏析等促进腐蚀的缺陷,但它们的应用仍然受到环境腐蚀的影响。本文首次介绍了近年来铁基非晶合金的研究进展,并对铁基非晶合金的制备及其腐蚀性能的研究现状进行了综述。本文首先详细讨论了带状、粉末和块状铁基非晶合金的制备方法,然后探讨了成分调节、结构状态和腐蚀介质等因素对这些合金耐蚀性的影响。最后,讨论了铁基非晶合金在耐腐蚀研究中的应用存在的问题和未来的发展趋势。
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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来源期刊
Journal of Materials Science
Journal of Materials Science 工程技术-材料科学:综合
CiteScore
7.90
自引率
4.40%
发文量
1297
审稿时长
2.4 months
期刊介绍: The Journal of Materials Science publishes reviews, full-length papers, and short Communications recording original research results on, or techniques for studying the relationship between structure, properties, and uses of materials. The subjects are seen from international and interdisciplinary perspectives covering areas including metals, ceramics, glasses, polymers, electrical materials, composite materials, fibers, nanostructured materials, nanocomposites, and biological and biomedical materials. The Journal of Materials Science is now firmly established as the leading source of primary communication for scientists investigating the structure and properties of all engineering materials.
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