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Fe-Cr-Mn系超细晶奥氏体不锈钢的形成机制及其组织与耐蚀性能研究
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1.西安工业大学材料与化工学院;2.西安交通大学金属材料强度国家重点实验室

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国家自然科学基金资助(项目号51271143)


Study on formation mechanism, microstructure and corrosion resistance of Fe-Cr-Mn-based ultra-fine grain austenitic stainless steel
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1.Xi’an Technological University,Xi’an;2.State Key Laboratory for Mechanical Behavior of Materials,Xi’an Jiaotong University,Xi’an

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    摘要:

    采用高能研磨诱导的机械合金化方法制备了Fe-Cr-Mn系不锈钢合金粉末;对MA合金粉末分别进行了退火和热压烧结,分析了过程中的相变规律,并对烧结获得的奥氏体不锈钢合金进行了组织和耐蚀性能研究。结果表明:MA获得的不锈钢合金粉末由亚稳态的纳米晶铁素体构成;退火/热压烧结后,铁素体逐渐转变为热力学上更加稳定的奥氏体,相变温度介于650 °C到700 °C之间;对MA粉末在900 °C、200 MPa条件下热压烧结1 h,获得的Fe-Cr-Mn系奥氏体不锈钢平均晶粒尺寸为亚微米级且表现出高硬度和良好的耐蚀性能,其硬度值约为535 HV、极化电压和极化电流分别为-0.28 V和1.43×10-9 A.cm-2

    Abstract:

    Fe-Cr-Mn-based stainless steel alloy powder was prepared by mechanical alloying method, which is induced by high energy milling. The milled powders were respectively annealed and sintered via hot pressing sintering method, and the phases evolution, microstructure and corrosion resistance were respectively analysed. It is found that the Fe-Cr-Mn-based stainless steel alloy prepared by mechanical alloying is mainly composed of metastable nanocrystalline ferrite phase. After annealing or hot pressing sintering, ferrite phase will transform into austenite phase, and the transformation temperature range from 650 °C to 700 °C. The powder milled for 16 h is hot pressed at 900 °C and 200 MPa for 1 h for bulk alloy. The average grain size of pressed bulk alloy is submicron, which displays high hardness and good corrosion resistance. The hardness, polarization voltage and polarization current are respectively 535 HV, -0.28 V and 1.43×10-9 A.cm-2.

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孙崇锋,党晓凤,席生岐,李建平,高圆,郭永春,杨忠,白亚平. Fe-Cr-Mn系超细晶奥氏体不锈钢的形成机制及其组织与耐蚀性能研究[J].稀有金属材料与工程,2021,50(2):600~606.[Chongfeng Sun, Xiaofeng Dang, Shengqi Xi, Jianping Li, Yuan Gao, Yongchun Guo, Zhong Yang, Yaping Bai. Study on formation mechanism, microstructure and corrosion resistance of Fe-Cr-Mn-based ultra-fine grain austenitic stainless steel[J]. Rare Metal Materials and Engineering,2021,50(2):600~606.]
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  • 收稿日期:2020-06-11
  • 最后修改日期:2020-08-02
  • 录用日期:2020-08-04
  • 在线发布日期: 2021-03-09
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