1.东北大学冶金学院,沈阳 110819
2.辽宁省沈抚改革创新示范区东大工业技术研究院,沈抚改革创新示范区 沈阳 110172
3.成都先进金属材料产业技术研究院股份有限公司,成都 610300
刘福斌(1978—),男,博士,教授;E-mail:liufb@smm.neu.edu.cn
姜周华(1963—),男,博士,教授;E-mail:jiangzh@smm.neu.edu.cn
收稿:2024-04-18,
纸质出版:2024-07-30
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刘福斌,姜周华,李花兵等.加压电渣重熔装备与工艺技术开发[J].特殊钢,2024,45(04):26-33.
Liu Fubin,Jiang Zhouhua,Li Huabing,et al.Development of Pressurized Electroslag Remelting Equipment and Process Technology[J].Special Steel,2024,45(04):26-33.
刘福斌,姜周华,李花兵等.加压电渣重熔装备与工艺技术开发[J].特殊钢,2024,45(04):26-33. DOI: 10.20057/j.1003-8620.2024-00097.
Liu Fubin,Jiang Zhouhua,Li Huabing,et al.Development of Pressurized Electroslag Remelting Equipment and Process Technology[J].Special Steel,2024,45(04):26-33. DOI: 10.20057/j.1003-8620.2024-00097.
加压电渣重熔是目前工业化制备高氮钢和高氮合金最为有效的生产路线,是当今电渣冶金领域的研究热点和前沿技术。介绍了加压电渣重熔成套设备、工艺技术发展和主要产品特点。对当前加压电渣炉装备中氮化合金加料系统和水-气动态平衡系统等核心部件进行综述;针对加压电渣重熔生产中的工艺难点,阐述了氮化合金增氮和气相增氮技术的机理和方法、新型高效发热精炼重熔渣系开发及元素精准控制等新工艺技术发展。近年来,随着国内新建的系列国产化中试规模加压电渣炉的应用和系列高氮钢产品的成功研制,我国在加压电渣重熔成套装备的自主研制和工艺技术开发上取得的较大突破,并逐步向国际先进水平迈进。同时,深入开展工业级加压电渣重熔成套装备的自主研制和工艺技术研发,保障我国航空、航天和军工等领域高端高品质特殊钢和特种合金等急需的关键材料制备,是我国发展现代电渣冶金技术的重要方向。
Pressurized electroslag remelting (PESR) is currently the most effective production route for industrial preparation of high nitrogen steel and high nitrogen alloys, and is currently a research focus and the most advanced technology in the field of electroslag metallurgy. This article introduces the development of the integrated line equipments, process technology, and main product characteristics of PESR. A review is conducted on the core components of the nitrogen alloy feeding system and water-gas dynamic balance system in the current PESR furnace equipment. In response to the current technological difficulties in PESR process, this paper elaborates on the development of new technologies such as the mechanism and method of nitrogen addition and gas-phase nitrogen addition technology for nitriding alloys, development of a new high-efficiency heating refining remelting slag system, and precise element control. In recent years, with the application of series newly built domestically produced pilot scale PESR furnaces and the successful development of series of high nitrogen steel products, China has made a significant breakthroughs in the integrated line equipment independent research and technological development, and gradually stepped forward to the international advanced level.At the same time, deepening the independent research and development of industrial grade PESR equipment and process technology research and development, ensuring the preparation of key materials urgently needed for high-quality special steels and special alloys in China's aviation, aerospace, and military industries fields and so on, is an important direction for the development of modern electroslag metallurgy technology in China.
傅 杰 . 第二代电渣冶金技术与重大装备制造 [J]. 材料与冶金学报 , 2011 , 10 ( S1 ): 8 - 13 .
李正邦 . 电渣冶金的发展历程、现状及趋势 [J]. 材料与冶金学报 , 2011 , 10 ( S1 ): 1 - 7 .
姜周华 , 董艳伍 , 耿 鑫 , 等 . 高品质特殊钢电渣重熔技术的开发和应用 [J]. 钢铁 , 2023 , 58 ( 9 ): 15 - 25 .
Mori G , Bauernfeind D . Pitting and crevice corrosion of superaustenitic stainless steels [J]. Materials and Corrosion , 2004 , 55 ( 3 ): 164 - 173 .
Jiang Z H , Zhu H C , Li H B , et al . Pressurized metallurgy for high performance special steels and alloys [J]. IOP Conference Series: Materials Science and Engineering , 2016 , 143 : 012038 .
Stein G , Menzel J . High pressure electroslag remelting–a new technology of steel refining [J]. Int J of Materials and Product Technology , 1995 , 10 ( 3/4/5/6 ): 478 - 488 .
Liu S C , Hashida T , Takahashi H , et al . A study on fractography in the low-temperature brittle fracture of an 18Cr-18Mn-0.7N austenitic steel [J]. Metallurgical and Materials Transactions A , 1998 , 29 ( 3 ): 791 - 798 .
Jin J , Shao T M . Effects of single- and dual-element ion implantation on tribomechanical properties of Cronidur 30 bearing steel [J]. Surface and Coatings Technology , 2018 , 344 : 303 - 311 .
Saller G , Aigner H . High nitrogen alloyed steels for nonmagnetic drill collars. standard steel grades and latest developments [J]. Materials and Manufacturing Processes , 2004 , 19 ( 1 ): 41 - 49 .
朱红春 , 姜周华 , 李花兵 , 等 . 加压技术在高品质特殊钢冶炼和凝固中的作用 [J]. 钢铁 , 2015 , 50 ( 11 ): 37 - 44 .
曹文全 , 俞 峰 , 王存宇 , 等 . 高端装备用轴承钢冶金质量性能现状及未来发展方向 [J]. 特殊钢 , 2021 , 42 ( 1 ): 1 - 10 .
肖爱平 , 张 洲 , 李德胜 , 等 . 电渣重熔渣系对GCr15轴承钢洁净度的影响 [J]. 特殊钢 , 2022 , 43 ( 6 ): 34 - 37 .
史智越 , 宁 鑫 , 杜 敏 , 等 . 30Cr 15 Mo1N高氮不锈轴承钢组织结构表征与旋弯疲劳机制 [J]. 特殊钢 , 2023 , 44 ( 5 ): 121 - 126 .
Stein G , Hucklenbroich I . Manufacturing and applications of high nitrogen steels [J]. Materials and Manufacturing Processes , 2004 , 19 ( 1 ): 7 - 17 .
Carosi A , Kleimt B , Paura G , et al . Mastering P-ESR technology for high nitrogen steel grades for high value applications [J]. Luxembourg: Publications Office of the European Union , 2010 : 21 - 48 .
姜周华 , 曹阳 , 李花兵 . 一种平衡加压电渣炉内气体和冷却水压力的设备 : CN201195737Y [P]. 2009-02-18 .
Patel A D , Hecht J , Magee J H , et al . On nitrogen pick-up during pressure-ESR of austenitic steels: International Symposium on Liquid Metal Processing and Casting [C]. Pittsburgh, USA , 2009 : 253 .
曹 阳 . 高氮奥氏体不锈钢的加压电渣重熔制备技术及其材料性能研究 [D]. 沈阳 : 东北大学 , 2009 .
姜周华 , 康从鹏 , 刘福斌 , 等 . 一种加压电渣重熔用高氮钢自耗电极及其制备方法 : CN113106265A [P]. 2021-07-13 .
耿金鹏 , 赵有为 . 一种过饱和高氮不锈钢加压电渣重熔工艺 : CN112359217B [P]. 2022-07-08 .
Bartosinski M , Magee J H , Friedrich B . Improving the chemical homogeneity of austenitic and martensitic stainless steels during nitrogen alloying in the pressure electro slag remelting (PESR) process [A]. 1 st International Conference on Ingot Casting , Rolling and Forging [C] . Aachen : TEMA , 2012 : 1 - 8 .
Stein G , Menzel J and Choudhury A . Industrial manufacture of massively nitrogen-alloyed steels in a pressure ESR furnace [J]. Steel Times , 1989 , 217 ( 3 ): 148 - 150 .
Yu J , Liu F B , Li H B , et al . Numerical simulation and experimental investigation of nitrogen transfer mechanism from gas to liquid steel during pressurized electroslag remelting process [J]. Metallurgical and Materials Transactions B , 2019 , 50 ( 6 ): 3112 - 3124 .
Yamamoto S , Momoi Y , Kajikawa K . Nitrogen addition using a gas blow in an ESR process [J]. IOP Conference Series: Materials Science and Engineering , 2016 , 143 : 012005 .
姜周华 , 冯浩 , 李花兵 , 等 . 一种加压感应和加压电渣重熔双联冶炼高氮钢的方法 : CN106011371B [P]. 2018-06-22 .
Shi C B , Huang Y , Zhang J X , et al . Review on desulfurization in electroslag remelting [J]. International Journal of Minerals, Metallurgy and Materials , 2021 , 28 ( 1 ): 18 - 29 .
Liu Y , Zhang Z , Li G Q , et al . Evolution of desulfurization and characterization of inclusions in dual alloy ingot processed by electroslag remelting [J]. Steel Research International , 2017 , 88 ( 11 ): 1700058 .
Kang C P , Liu F B , Geng X , et al . Desulfurization behavior of low-sulfur plastic die steel during ESR process under different atmospheres [J]. ISIJ International , 2021 , 61 ( 1 ): 219 - 228 .
Yang S X , Li H B , Feng H , et al . Desulfurization behavior of Fe-18Cr-18Mn alloy during the pressurized electroslag remelting with different atmospheres and Na 2 O-containing slags [J]. Metallurgical and Materials Transactions B , 2021 , 52 ( 3 ): 1294 - 1308 .
Yang S X , Li H B , Feng H , et al . Reaction mechanism and control strategy of Aluminum increase in high nitrogen stainless bearing steel during pressurized electroslag remelting [J]. Metallurgical and Materials Transactions B , 2022 , 53 ( 2 ): 1148 - 1161 .
Yang S X , Li H B , Feng H , et al . Effects of atmosphere and Na 2 O in slag on inclusion characteristics of Al-killed Fe-18Cr-18Mn remelted by (P)ESR process [J]. Metallurgical and Materials Transactions B , 2023 , 54 ( 4 ): 2229 - 2243 .
Kang C P , Liu F B , Zheng H B , et al . Microstructure evolution and mechanical properties of PESR 55Cr17Mo1VN plastic die steel during quenching and tempering treatment [J]. Journal of Iron and Steel Research International , 2021 , 28 ( 12 ): 1625 - 1633 .
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