奥氏体化温度对铁轨用添加铝的铁-镍贝氏体钢腐蚀行为的影响

IF 0.6 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
M. Rohmah, M. Y. Hasbi, F. Citrawati
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引用次数: 0

摘要

研究了奥氏体回火温度在 300 至 400°C 之间变化以在结构上形成贝氏体对两种新开发的含 1 和 2 wt.% Al 的铁镍钢的耐腐蚀性和机械性能的影响。在 3.5 重量%的氯化钠溶液中对这些钢材进行了腐蚀测试。结果发现,铝含量和奥氏体回火温度的增加会促进钢中贝氏体板条结构的形成,但这对硬度的影响不大。电化学测试结果表明,当铝含量从 1 wt.% 增加到 2 wt.% 时,钢在类似海洋大气中的耐腐蚀性增加。提高奥氏体回火温度往往会改善两种钢的耐腐蚀性,但在最高温度下加工的含 1 wt.% Al 的钢除外。结果表明,钢的耐腐蚀性受硬度的影响比受结构中贝氏体板条体积分数的影响更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of Austempering Temperature on the Corrosion Behavior of Fe – Ni Bainitic Steel with Al Addition for Railroad Tracks

Effects of Austempering Temperature on the Corrosion Behavior of Fe – Ni Bainitic Steel with Al Addition for Railroad Tracks

The effect of austempering temperatures varied from 300 to 400°C to form bainite in the structure on the corrosion resistance and mechanical properties of two newly developed FeNi steels containing 1 and 2 wt.% Al is investigated. Corrosion tests of the steels are carried out in a 3.5 wt.% NaCl solution. It is found that an increase in the Al content and in the austempering temperature promotes formation of a bainite lath structure in the steels; however, this has an insignificant effect on the hardness. The results of an electrochemical test show that the corrosion resistance of the steel in marine-like atmosphere increases upon increasing the Al content from 1 to 2 wt.%. The increase of the austempering temperature tends to improve the corrosion resistance of both steels, except for the steel with 1 wt.% Al processed at the highest temperature. It is shown that the corrosion resistance of the steels is more affected by the hardness than by the volume fraction of bainite laths in the structure.

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来源期刊
Metal Science and Heat Treatment
Metal Science and Heat Treatment 工程技术-冶金工程
CiteScore
1.20
自引率
16.70%
发文量
102
审稿时长
4-8 weeks
期刊介绍: Metal Science and Heat Treatment presents new fundamental and practical research in physical metallurgy, heat treatment equipment, and surface engineering. Topics covered include: New structural, high temperature, tool and precision steels; Cold-resistant, corrosion-resistant and radiation-resistant steels; Steels with rapid decline of induced properties; Alloys with shape memory effect; Bulk-amorphyzable metal alloys; Microcrystalline alloys; Nano materials and foam materials for medical use.
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