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侯育花

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基本信息

姓名:侯育花

性别:

在岗性质:全职硕导

最高学位:博士

专业技术职务:副教授

毕业学校:华南理工大学

行政职务:副院长

所在院校:材料科学与工程学院

联系电话:18146623968

电子邮箱:hyhhyl@163.com

研究方向
硕士:
1. 材料科学与工程学院 001 材料与化工 085600 复合材料 05
硕士:
2. 材料科学与工程学院 001 循环经济及资源综合利用 04
工作经历

2011-09 至今  ,南昌航空大学,材料学院无机非金属系,副教授

2004-092005-07,江西省横峰中学,物理教研组,中教二级   























教育经历

2008.92011.9华南理工大学材料加工工程博士

2005.92008.7广西大学材料学硕士

2000.92004.7,江西师范大学,物理学教育,学士  
















科研项目

(1)  国家自然科学基金地区基金,高性能MnBi永磁的晶间相优化与磁结构转变温度调控的机理研究,项目编号:523610342024.1-2027.12,项目负责人

(2)  国家自然科学基金青年基金,钴铁氧体中的缺陷与磁性能关联性的机理研究,项目编号:113041462014.1-2016.12,项目负责人

(3)  省科技厅自然科学基金,钴铁氧体中稀土及过渡族金属离子掺杂对其磁性和电子结构影响的研究,项目编号:20151BAB2120052015.4-2016.12,项目负责人

(4)  省重点研发项目,高矫顽力低重稀土高性能稀土永磁关键技术研究与开发,项目编号:20192ACB500202019.11-2022.9,项目负责人

(5)  省科技厅自然科学基金,“M型锶铁氧体中的缺陷与磁性能关联性的机理研究,项目编号:20202BABL2040222020.9-2022.10,项目负责人

(6)  横向课题,各向异性MnBi磁粉及磁体研发,项目编号:HK201701287, 2017.10-2019.10,项目负责人

(7)  横向课题,各向异性NdFeB磁粉研发,项目编号:HK2018010422018.4-2020.4,项目负责人

(8)  横向课题,钕铁硼永磁降Dy技术研究与开发,项目编号: HK2020011182020.11-2023.12,项目负责人

(9)  横向课题,高性能稀土永磁研究与开发,项目编号: HK2021011652021.9-2023.9,项目负责人

(10)  横向课题,高性能磁性材料测试分析,项目编号: HK2022010321.1-2023.12,项目负责人

荣誉奖项

入选2017年校“青年英才计划”;2016年获得学校理论教学比赛一等奖;校级教学成果二等奖;2022年获中国发明协会一等奖; 所指导的多名研究生获得江西省优秀硕士学位论文 





















社会兼职

中国稀土学会会员,江西省计量测试学会和协会专家库专家, 安徽省、云南省和湖北省重大专项/重点研发计划项目评审专家,江西省优秀硕士学位论文指导教师   















备注

在国内外著名期刊Acta Mater., Electrochim. Acta, J. Phys. D: Appl. Phys.Phys. Chem. Chem. Phys.等发表论文40余篇,单篇最高引用150余次,担任Journal: J Phys. Condens. Matter., J. Mag. Mag. Mater., J. Alloy. Compd.等国际SCI期刊审稿人等期刊论文的审稿工作。

近几年发表的代表性学术论文:

(1) Y. L. Huang, Q. Feng, W. Li,C. Yang, W. X. Chai, J. M. Luo, Z. S. Pang, X. Yu, L. Z. Zhao, Y. H. Hou*, Controlling grain growth to achieve improved magnetic properties of NdCeFeB magnets via grain boundary diffusion, Applied Physics Letters, 2024, 124: 022406(1-7)

(2) R.Y. Zhang,Y. H. Hou*, X.L. Guo, X.Y. Li, W. Li, X.M.Tao, Y.Y. Huang, Exploring the structural stability and electrochemical performance of B doped T-graphene nanotubes from first-principles calculationsPhysical Chemistry Chemical Physics, 2024, 26: 455-462

(3) 侯育花,喻玺,黄有林,李伟,钟长传,刘刚,袁维仁,庞再升,钟艺,一种具有高安全性的钕铁硼材料表面处理装置,专利号:ZL 2023 1 1305751.X,授权公告日:20231208日,授权公告号:CN 117020863 B

(4) Y.H. Hou, Z.J. Wu, H.F. Li, X.S. Zhang, W.X. Chai, Q. Feng, W. Li, X. Yu, Z.S. Pang, L. Ma, H.B. Yu, Y.L. Huang*, Microstructure regulation and optimizing magnetic properties of (La, Ce, Pr)17Fe78B6 alloy via short-range grain boundary diffusion, Journal of Alloys and Compounds, 2023, 957: 1700351-7.

(5) Y.F. Yao,Y.H. Hou*, H.F. Li, W.X. Chai, Z.J. Wu, Q. Feng, W. Li, Z.S. Pang, L. Ma, H.B. Yu, Y.L. Huang*Microstructure and magnetic properties of exchange-coupled nanocomposite Sm0.75Zr0.25(Fe0.8Co0.2)11Ti alloyJournal of Magnetism and Magnetic Materials, 2023, 571: 1705781-6.

(6) Q. Feng, Y.L. Huang, H.F. Li, J.Y. Yu, C.Y. Wang, Z.J. Wu, Y.F. Yao, Y.H. Hou*, W. Li, L. Ma, H.B. Yu, Elevated corrosion resistance and improved magnetic properties of sintered Nd-Fe-B magnets via the infiltration of DyCr film, Journal of Alloys and Compounds, 2023, 940:168827(1-9).

(7) X. L. Guo,Y. H. Hou*, S. H. Zheng, X. Chen, W. Li, X. M. Tao, Y. L. Huang, Unraveling the Mechanism of Structural Stability and Electrochemical Performance of N/F-Modified Li2FeSiO4: A First-Principles Study, Advanced Theory and Simulations, 2022, 2200610 (1-8).

(8) Y.L. Huang, Y.F. Yao, F.Y. Wang, H.F. Li, Z.J. Wu, Q. Feng, W. Li, J.M. Luo,Z.S. Pang, C.C. Zhong, H.Y. Hua*, Improving intergranular phase and enhanced coercivity: A grain boundary diffusion of nonheavy rare earth PrNdAl alloy in sintered Nd-Fe-B magnetsTunning Ce valence and optimizing intergranular phase to prepare high abundance (La, Ce, Pr)-Fe-B permanent alloys with excellent propertiesMaterials Characterization Journal of Magnetism and Magnetic Materials, 2022183:1115961-9).

(9) S.H. Zheng, Y.H. Hou*, X.L. Guo, et al., Effects of S/F doping and Li/Mn site exchange in Li2MnSiO4: A first-principles investigation of the structural, electrochemical and electronic properties, Electrochimica Acta, 2021, 367: 137553 (1-7).

(10) X.T. Yan, Y.H. Hou*, S.H. zheng, et al., Benefits of Ga, Ge and As substitution in Li2FeSiO4: a first-principles exploration of the structural, electrochemical and capacity properties, Physical Chemistry Chemical Physics, 2020, 22: 14712-14719.

(11)Y.H. Hou*, X.T. Yan, Y.L. Huang, et al., Structural, electronic and magnetic properties of manganese substituted CoFe2O4: A first-principles studyJournal of Magnetism and Magnetic Materials, 2020, 495: 165862(1-6).

(12) X.T. Yan,Y.H. Hou*, Y.L. Huang, et al., Effects of Ga, Ge and As Modification on Structural, Electrochemical and Electronic Properties of Li2MnSiO4Journal of The Electrochemical Society, 2019, 166: A3874-A3880.

(13) X.T. Yan, Y.H. Hou*, Z.Q. Shi, et al., Enhanced magnetic properties and improving thermal stability for sintered Nd-Fe-B magnets prepared by two-step grain boundary diffusion processesJournal of Magnetism and Magnetic Materials, 2019, 491: 1655411-7.

(14) W. B. Fan, Y. H. Hou*, X. J. Ge, et al., Microstructure and improved magnetocaloric properties: LaFeSi/LaAlmagnets prepared by spark plasma sintering technique, Journal of Physics D-Applied Physics, 2018, 51: 115003(1-8).

(15) Y.H. Hou*, Y.L. Huang,S.J. Hou, et al., Structural, electronic and magnetic properties of RE3+-doping in CoFe2O4: A first-principles study, Journal of Magnetism and Magnetic Materials, 2017, 421: 300-305.

(16) Y.H. Hou*, Y.L. Wang, Y.L. Huang*, et al., Effects of Nd-rich phase on the improved properties and recoil loops for hot deformed Nd-Fe-B magnets, Acta Materialia., 2016, 115: 385-391.

(17) Y.H. Hou*, Y.L. Huang, Z.W. Liu, et al., Hot deformed anisotropic nanocrystalline NdFeB based magnetsprepared from spark plasma sintered melt spun powdersMaterials Science and Engineering B, 2013, 178: 90-997.