等离子体电解硬化方式对65G钢组织和性能的影响

Q4 Physics and Astronomy
B. Rakhadilov, R. Kozhanova, D. Baizhan, L. Zhurerova, G. Yerbolatova, A. Kalitova, L.N. Zhanuzakova
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引用次数: 1

摘要

研究了不同条件下经电解等离子体硬化处理的65G钢的组织、硬度和耐磨性。还介绍了电解等离子体硬化技术和实现电解等离子体硬化的实验室装置。经电解等离子体硬化后,我们确定了由a相(马氏体)和M3C渗碳体组成的改性层。研究结果表明,经电解等离子体硬化处理后,在65G钢表面形成的层状材料的显微硬度比原始样品提高了2.6倍,耐磨性提高了2倍,抗磨料磨损能力提高了1.7倍。此外,局部硬化确保了技术和经济效果的实现,因为不需要隔离零件的不需要的位置,只加工需要硬化的区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of plasma electrolytic hardening modes on the structure and properties of 65G steel
This work presented a study of the structure, hardness and wear resistance of 65G steel treated with electrolyte-plasma hardening under different conditions. The electrolyte-plasma hardening technology and a laboratory installation for the realisation of electrolyte-plasma hardening are also described. After electrolyte-plasma hardening, we have established that a modified layer consists of the a-phase (martensite) and M3C cementite. The study results showed that electrolyte-plasma hardening makes it possible to obtain layers on the 65G steel surface that provides an increase in microhardness by 2.6 times, wear resistance by two times, resistance to abrasive wear by 1.7 times compared to the original samples. In addition, local hardening ensures the achievement of technical and economic effects due to the absence of the need to isolate an unwanted site of parts, processing only the areas requiring hardening.
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来源期刊
Eurasian Journal of Physics and Functional Materials
Eurasian Journal of Physics and Functional Materials Materials Science-Materials Science (miscellaneous)
CiteScore
1.10
自引率
0.00%
发文量
23
审稿时长
5 weeks
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