人才信息库
曹艳飞
性 别 最高学历 博士研究生
职 称 项目研究员 专家类别 硕士生导师
部 门 先进钢铁材料研究部,团委委员,团支部书记
通讯地址 辽宁省沈阳市沈河区文化路72号,中国科学院金属研究所,先进钢铁材料研究部
邮政编码 110016 电子邮件 yfcao10s@imr.ac.cn
电 话 +86-24-83970106 传 真 024-83970097
简历:

2006.09 – 2010.06, 中南大学 材料化学  学士

2010.09 – 2016.06, 中国科学院大学 材料加工工程  博士

2016.07 – 2019.08, 中国科学院金属研究所  助理研究员

2019.09 – 2022.08, 中国科学院金属研究所  副研究员

2020.10 – 至今, 中国科学院金属研究所  团委委员/团支部书记

2022.09-至今,中国科学院金属研究所, 项目研究员

研究领域:

特殊钢及关键部件均质化机理与关键技术开发

承担科研项目情况:

  长期从事特殊钢及关键部件均质化机理与关键技术开发,研制的高均质钢在航空航天、核电等领域广泛应用。在《Nature Materials》、《Nature Communications》和《Acta Materialia》等冶金和材料期刊发表论文30余篇,申请发明专利近20项,授权软件著作权3项,制订企业标准3项,做邀请报告多次。荣获2020年中国科协青年人才托举工程,担任多个SCI、EI期刊青年编委。主持中科院战略性科技先导专项课题、NSFC基金、两机专项子课题、中法国际合作、国研中心青年人才项目、企业技术开发课题等十多项,累积经费近3000万。合作企业包括法国电力、中国一重、中国二重、中信重工、兰石重工、抚顺特钢、长城特钢、东方钽业、中航发贵阳所、中航哈轴、洛轴LYC等知名企业。

社会任职:

担任《Transactions of Nonferrous Metals Society of China》中英文、《特种铸造及有色合金》、《粉末冶金材料科学与工程》青年编委,《Materials》期刊Topic editor.

获奖及荣誉:

2020年度,中国科协“青年人才托举工程”国家青年人才计划

2020年度,中国科学院“五四红旗团支部”

代表论著:

近期发表论文

  在《Nature Materials》、《Nature Communications》和《Acta Materialia》等冶金和材料期刊发表论文30余篇,近期部分论文如下:

1.D.Z. Li*, P. Wang, X.Q. Chen, P.X. Fu, Y.K. Luan, X.Q. Hu, H.W. Liu, M.Y. Sun, Y. Chen, Y.F. Cao, et al, Low oxygen rare earth steels. Nature Materials, 21 (2022) 1137-1143

2.D.Z. Li*, X.Q. Chen, P.X. Fu, X.P. Ma, H.W. Liu, Y. Chen, Y.F. Cao, et al, Inclusion flotation-driven channel segregation in solidifying steels. Nature Communications. 2014, 5: 5572.

3.Y.F. Cao, et al, Formation mechanism of channel segregation in carbon steels by inclusion flotation: microtomography characterization and multi-phase flow modeling, Acta Materialia. 2016, 107: 325-336

4.Y.F. Cao, et al,The experimental characterization and numerical simulation of A-segregates in 27SiMn steel, Metallurgical and Materials Transactions A. 2017, 48: 2260-2273

5.Y.F. Cao, et al, Comparison of channel segregation formation in model alloys and steels via numerical simulations, Metallurgical and Materials Transactions A. 2016, 47: 2927-2939

6.Y.F. Cao, et al, IOP Conf. Series: Mater. Sci. Eng. 2015, 84: 012098

7.Y.F. Cao, et al, IOP Conf. Series: Mater. Sci. Eng. 2016, 117: 012066

8.Y.F. Cao, et al, Inducing mechanism and model of the critical oxygen content in homogenized steel. Materials & Design, 2021, 205:109723

9.Y.F. Cao, et al, On the mechanism of steel homogenization via Rare Earth addition: Experimental characterization and numerical simulation. Metallurgical and Materials Transactions B, 2022, 53:1858-74

10.B.H. Zhu, Z.Z. Chen, Y.F. Cao* et al, Characteristics, mechanism and criterion of channel segregation in NbTi alloy via numerical simulations and experimental characterizations. Materials, 2021, 14:796.

11.C. Sun, P.X. Fu, H.W. Liu, H.H. Liu, N.Y. Du, Y.F. Cao*, Effect of lath martensite microstructures on the strength in a medium carbon low alloy steel. Crystals, 2020, 10: 232.

12.N.Y. Du, H.W. Liu, P.X. Fu, H.H. Liu, C. Sun, Y.F. Cao*, et al, Microstructural stability and softening resistance of a novel hot-work die steel. Crystals, 2020, 10: 238.

13.赵红运,朱宝辉,刘彦昌,曹艳飞* 等,低密度Nb-Ti-Al-Mo-W-Zr铌合金的热变形行为及组织,特种铸造及有色合金,2021, 41: 1488~93

14.赵子文,曹艳飞*,等. 大型钢锭铸锻一体化液芯锻造数值模拟及工艺实践,锻压技术,2019,44: 21-28

15.W.F. Liu, Y.F. Cao, et al, Solidification microstructure of Cr4Mo4V steel forged in the semi-solid state. Journal of Materials Science and Technology, 2020, 38: 170-82

16.W.F. Liu, Y.F. Cao, et al, Characteristics and transformation of primary carbides during austenitization in Cr4Mo4V bearing steel. Materials Characterization, 2020, 169: 110636

17.J.K. Ren, Y. Chen, Y.F. Cao, et al, Modeling motion and growth of multiple dendrites during solidification based on vector-valued phase field and two-phase flow models. Journal of Materials Science and Technology, 2020, 58:171-87

18.N.Y. Du, H.H. Liu, Y.F. Cao, et al, Formation mechanism of MC and M2C primary carbides in as-cast M50 bearing steel. Materials Characterization, 2021, 174:111011

19.J.K. Ren, Y. Chen, Y.F. Cao, et al, A phase-field simulation of the solidification process under compression. Journal of Materials Research and Technology, 2021, 13:2210-19

20.J.K. Ren, Y. Chen, Y.F. Cao, et al, A phase-field study of the solidification process coupled with deformation. Journal of Materials Science, 2021,56:12455-74

21.N.Y. Du, H.H. Liu, Y.F. Cao, et al, In Situ Investigation of the Fracture of Primary Carbides and its Mechanism in M50 Steel. Materials Characterization, 2022, 186: 111822

22.T.Z. Gong, Y. Chen*, S.S. Li, Y.F. Cao, et al, Revisiting dynamics and models of microsegregation during polycrystalline solidification of binary alloy. Journal of Materials Science and Technology, 2021, 74: 155-67

23.H.H. Liu, P.X. Fu, H.W. Liu, Y.F. Cao, et al, Effects of Rare Earth elements on microstructure evolution and mechanical properties of 718H pre-hardened mold steel, Journal of Materials Science and Technology, 2020, 50: 245-56

24.W.F. Liu, Y. Guo, M.Y. Sun*, Y.F. Cao, et al, Transformation behavior of primary MC and M2C carbides in Cr4Mo4V steel. Journal of Alloys and Compounds, 2021, 889: 2021, 161755

25.T.Z. Gong, Y. Chen*, S.S. Li, Y.F. Cao, et al, Equiaxed dendritic growth in nearly isothermal conditions: A study combining in situ and real-time experiment with large-scale phase-field simulation. Materials Today Communications, 2021,28 :102467

26.W.F. Liu, B.J. Xie, M.Y. Sun*, Y.F. Cao, et al, Interfacial Oxides Evolution of High-Speed Steel Joints by Hot-Compression Bonding. Acta Metallurgica Sinica (English Letters), 2022, online 21

27.W.F. Liu, J.Y. Zhang, M.Y. Sun*, B. Xu, Y.F. Cao, et al, A hot-compression bonding method for manufacturing large high-speed homogeneous steels. Journal of Materials Research and Technology, 2022, 17: 507-520

28.L.Q. Yang, W.H. Xue*, S.Y. Gao, H.W. Liu, Y.F. Cao, et al, Study on sliding friction and wear behavior of M50 bearing steel with rare earth addition. Tribology International, 2022, 174: 107725

29.C. Sun, P.X. Fu*, X.P. Ma, H.W. Liu, H.H. Liu, N.Y. Du, Y.F. Cao, et al, Effect of matrix carbon content and lath martensite microstructures on the tempered precipitates and impact toughness of a medium-carbon low-alloy steel. Journal of Materials Research and Technology, 2020, 9(4): 7701-7710

近期获得专利

1.曹艳飞 等,一种高碳高合金钢产品及其制备方法,授权号2021115816686

2.马晓平,李殿中,曹艳飞 等,一种控制大尺寸连铸坯中V偏析的方法,发明专利,授权号201810126647.7

3.徐斌,郭逸丰,孙明月,曹艳飞 等,高效率消除坯料内部孔洞型缺陷的超高温软芯锻造方法,发明专利,授权号201810273899.2

4.孙明月,郭逸丰,刘威峰,曹艳飞等,一种适用于超高温软芯锻造用常规锭型钢锭的处理方法,发明专利,授权号201710854355.0

5.曹艳飞 等,采用VAR工艺对特殊钢枝晶细化及夹杂物去除的控制方法,发明专利,申请号2022109002577

6.曹艳飞 等,不锈钢材料的制备方法和不锈钢材料,发明专利,申请号202210998502.2

7.曹艳飞 等,一种模拟钢包精炼过程的方法、装置及存储介质,发明专利,申请号202210979909.0

8.曹艳飞 等,一种钢质轴承套圈及其制备方法,发明专利,申请号2021115804176

9.刘宏伟, 李殿中, 曹艳飞 等,一种特殊钢及其制备方法,发明专利,申请号2022104996340

10.李殿中, 刘宏伟, 曹艳飞 等,一种M50钢轴承套圈及其制备方法、一种轴承,发明专利,申请号2022104550791

11.刘宏伟, 李殿中, 曹艳飞 等,一种M50轴承钢棒材及其制备方法,发明专利,申请号2022104353168

12.李殿中, 刘宏伟, 曹艳飞 等,一种高碳中高合金钢及其制备方法,发明专利,申请号2022106989799

13.赵志坡, 李殿中, 刘宏伟, 曹艳飞,一种高温扩散方法及一种合金钢,发明专利,申请号202210157213X

14.赵志坡, 李殿中, 刘宏伟, 曹艳飞,一种改善或消除合金偏析及粗大析出相的方法、一种合金,发明专利,申请号2022107835834

15.李殿中, 马晓平, 刘宏伟, 傅排先, 曹艳飞 等,一种具有近平衡态凝固组织的合金的制备方法和装置,发明专利,申请号202210332035X

 

学术活动(近期国际国内会议报告及任职等)

1.邀请报告,Homogenized Steel: Macrosegregation Formation and Control via Rare Earth (RE) Addition,2018年11月,美国圣地亚哥,第二届材料工程与冶金国际会议。

2.邀请报告,Homogenized Steel by Low-Oxygen Purifying Idea: Its Mechanism and Practice,2019年6月,中国厦门,第七届冶金技术与材料国际会议。

3.邀请报告,A novel technology to make homogenized steels by directly forging solidifying metal,2019年9月,中国武汉,第二届冶金创新论坛国际会议。

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