门贺,博士,关键人才高级工程师。
研究方向:
具有高饱和磁性感应强度非晶、纳米晶合金的开发及其磁性能研究。
非晶、纳米晶及其相关产品的产业化研究。
学习工作经历:
2003年7月,中国东北大学材冶学院,本科;
2007年3月,日本东北大学金属材料研究所,硕士;
2010年3月,日本东北大学金属材料研究所,博士;
2010年6月至今,中国科学院宁波材料技术与工程研究所,高级工程师。
承担项目列表:
1.国家自然科学基金项目(青年科学基金) “高饱和磁感应强度FeSiBPCu纳米晶软磁合金晶化机制研究”。
2.国家自然科学基金项目(面上基金)“微合金化的Fe-Si-B-P-Cu非晶合金纳米晶化行为及其软磁性能的研究”。
3.宁波市基金, “高Fe含量FeSiB(P)Cu系纳米晶软磁合金非均匀晶化行为及其机理研究”
4.中科院宁波材料所-江苏奥玛德新材料科技有限公司共建工程中心”项目负责人。
5.中科院宁波材料所-兆晶科技股份有限公司的工程中心项目,项目负责人。
代表文章列表:
1.Men He, Liying Cui, Takeshi Kubota, Kunio Yubuta, Akihiro Makino and Akihisa Inoue,Fe-Rich Soft Magnetic FeSiBPCu Hetero-Amorphous Alloyswith High Saturation Magnetization,Materials Transactions, Vol. 50, No. 6 (2009) pp. 1330 to 1333
2.A.D. Wang, H. Men*, C.L. Zhao, C.T. Chang*, R.-W. Li, X.M. Wang,Crystallization Behavior of FeSiBPCu Nanocrystalline Soft-magnetic Alloys with High Fe Content, Science of Advanced Materials.
3.Baolong Shen, He Men, and Akihisa Inoue,Fe-based bulk glassy alloy composite containing in situ formed α-(Fe,Co) and (Fe,Co)23B6 microcrystalline grains,APPLIED PHYSICS LETTERS 89, 101915 (2006)
4.Akihiro Makino, He Men, Takeshi Kubota, Kunio Yubuta and Akihisa Inoue,FeSiBPCu Nanocrystalline Soft Magnetic Alloys with High Bs of 1.9 Tesla Produced by Crystallizing Hetero-Amorphous Phase,Materials Transactions, Vol. 50, No. 1 (2009) pp. 204 to 209
5.Akihiro Makino, He Men, Takeshi Kubota, Kunio Yubuta, and Akihisa Inoue,New Fe-metalloids based nanocrystalline alloys with high Bs of 1.9 T andexcellent magnetic softness,JOURNAL OF APPLIED PHYSICS 105, 07A308 (2009)
6.Akihiro Makino,He Men, Kunio Yubuta, and Takeshi Kubota,Soft magnetic FeSiBPCu heteroamorphous alloys with high Fe content,JOURNAL OF APPLIED PHYSICS 105, 013922(2009)
7.Akihiro Makino, He Men, Takeshi Kubota, Kunio Yubuta and Akihisa Inoue,New excellent soft magnetic FeSiBPCu nanocrystallized alloys with high Bs of 1.9T from nanohetero-amorphous phase,IEEE TRANSACTIONS ON MAGNETICS, VOL. 45, NO. 10, OCTOBER(2009)pp.4302 to 4305
8.Liying Cui, He Men, Akihiro Makino, Takeshi Kubota, Kunio Yubuta and A Inoue,Effect of Cu and P on the Crystallization Behavior of Fe-RichHetero-Amorphous FeSiB Alloy,Materials Transactions, Vol.50 No.11 (2009) pp.2515-252
9.F.L. Kong, A.D. Wang, X.D. Fan, H. Men, B.L. Shen, G.Q. Xie, A. Makino, A. Inoue,High BS Fe84-xSi4B8P4Cux(x=0?1.5) nanocrystalline alloys with excellent magnetic softness,J. Appl. Phys. 109 (2011) 07A303, 1-3
10.X.D. Fan, A.B. Ma, H. Men, G.Q. Xie, B.L. Shen, A. Makino, A. Inoue,Fe-based nanocrystalline FeBCCu soft magnetic alloys with high magnetic flux density,J. Appl. Phys. 109 (2011) 07A314, 1-3
11.A. D. Wang, H. Men, B. L. Shen, G. Q. Xie, A. Makino, A. Inoue,Effect of P on crystallization behavior and soft-magnetic properties of Fe83.3Si4Cu0.7B12?xPx nanocrystalline soft-magnetic alloys,Thin solid films. 519 (2011) 8283-8286
12.F. L. Kong, H. Men, B. L. Shen, G. Q. Xie, A. Makino, A. Inoue,Effects of Cu and P on crystallization and magnetic properties of FeSiB alloy,IEEE Transactions on Magnetics. 47 Vol. 10 (2011): 3180-3183
13.F.L. Kong, H. Men, B.L.Shen,Effect of P to B concentration ratio on soft magnetic properties in FeSiBPCu nanocrystalline alloys,J. Appl. Phys, 111 (2012), 07A311, 1-3
14.X.D. Fan, H. Men, A.B. Ma, B.L. Shen,The influence of Si substitution on soft magnetic properties and crystallization behavior in Fe83B10C6-xSixCu1 alloy system,Science China Technological Sciences,55 (2012) 2416-2419
15.F.L. Kong, H. Men, M.X. Zhang, T.C. Liu, G.Q. Xie, B.L. Shen,Effect of Cu additions on the magnetic properties and microstructure of FeCoNbB nanocrystalline alloy,Appl. Phys. A-Materials Science Processing, 108 (2012) 211-215
16.Y.L. Jin, X.D. Fan, H. Men, X.C. Liu, B.L. Shen, FePCCu nanocrystalline alloys with excellent soft magnetic properties,Science China Technological Sciences, (2012)1-6
17.Z. Xiang, A.D. Wang, C.L. Zhao, H. Men, X.M. Wang, C.T. Chang, D. Pan,Optimization of thermal stability and soft-magnetic properties of FeSiBPCuNb alloys by Nb content tuning,Journal of Alloys and Compounds, 622 (2015) 1000–1004
专利列表:
1.大非晶形成能力铁基块体非晶磁性合金材料及制备方法,沈宝龙 黎嘉威 胡明俊 门贺,申请号:201010260501.5,授权号:CN101928896B
2.一种准晶颗粒强化金属玻璃基内生复合材料及其制备方法,中国发明专利,赵远云、李润伟、王新敏、常春涛、门贺,申请号:201310350437.3
3.具有高饱和磁感应强度和强非晶形成能力的铁基非晶合金,中国发明专利,常春涛,王安定,赵成亮,门贺,王新敏,申请号:201410197139.X
4.塞尺带用非晶合金带材及制备方法,中国发明专利,赵成亮、常春涛、王安定、门贺、王新敏,申请号:201410275727.0
5.一种高熵非晶合金、其制备方法及应用,中国发明专利,霍军涛、常春涛、门贺、李润伟、王新敏,申请号:201410310509.6
6.一种印染污水的处理方法,中国发明专利,霍军涛,甘卓然,常春涛,李润伟,王新敏,门贺,申请号:201410311123.7
7.一种兼具优异工艺性和高饱和磁感应强度的铁基纳米晶软磁合金,中国发明专利,常春涛,向震,王安定,门贺,王新敏,潘登,申请号:201410415305.9
8.一种铁基纳米晶软磁合金材料及其制备方法,中国发明专利,门贺,薛琳,王安定,常春涛,赵成亮,杨卫明,刘海顺,申请号:201410728540.1
9.一种用于磁性器件的芯铁及其制备方法,中国发明专利,王安定,贺爱娜,常春涛,王新敏,门贺,赵成亮,申请号:201510136838.8
10.一种用于磁性器件的芯铁,中国实用新型专利,王安定,贺爱娜,常春涛,王新敏,门贺,赵成亮,申请号:201520175890.X