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华南理工大学研究生导师简介-钟喜春

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更新日期:2019年3月18日
姓 名 钟喜春 性 别 男
出生年月 1973年3月 籍贯 湖南新宁
民 族 汉族 政治面貌 党员
最后学历 博士研究生 最后学位 工学博士
技术职称 教授 导师类别 硕导
行政职务Email xczhong@scut.edu.cn
工作单位 材料科学与工程学院 邮政编码 510640
通讯地址 华南理工大学8号楼213室
单位电话 **


个人简介
钟喜春,男,博士,教授,硕士生导师,美国爱荷华州立大学(美国能源部Ames实验室)和新加坡南洋理工大学访问学者。现任全国热处理标准化技术委员会委员,广东省机械工程学会热处理分会秘书长。长期从事磁性功能材料及器件,材料的表面技术等方面的研究工作。近年来,主要从事高性能磁热材料的制备、应用特性及相关机理;高磁导率、低损耗和低矫顽力Mn-Zn软磁铁氧体的掺杂、改性与性能提升及材料表面工程等研究工作,先后主持包括国家自然科学基金面上项目、国家重点研发计划项目子项目、广东省自然科学基金面上项目、广东省科技计划项目、广州市科技计划项目、留学归国人员启动基金项目、中央高校基本业务费资助(面上、重点)项目等各类科研项目共计16项,参与国防973项目1项、国家自然科学基金重点项目1项、国家自然科学基金面上项目3项、省部级项目10余项。以第一发明人获得授权发明专利5项,受理申请国家发明专利10余项。先后在Journal of Applied Physics、Journal of Magnetism and Magnetic Materials、Journal of Alloys and Compounds、Journal of Physics D: Applied Physics、International Journal of Refrigeration、Intermetallics、Materials Letters、Materials Today Communication、MRS Communication、稀有金属材料与工程、材料研究学报、功能材料、真空科学与技术学报等国际、国内著名刊物上发表相关学术论文100多篇。长期担任Journal of Alloys and Compounds、Journal of Materials Science、Journal of Physics D: Applied Physics、Physics Letters A、Materials Letters、Current Applied Physics、Journal of Applied Physics, MRS Communications、Intermetallics、Journal of Magnetism and Magnetic Materials、Materials Chemistry and Physics、Materials Research Letters、Journal of Rare Earths、表面技术等国际国内材料期刊的审稿专家。
工作经历
1、1996.7-1997.8 中国人民解放军第五七一二工厂,助理工程师;
2、2003.7-2008.6 华南理工大学机械工程学院,讲师;
3、2003.7-2008.11 华南理工大学材料科学与工程学院,讲师;
3、2007.11-2008.11 美国爱荷华州立大学(美国能源部Ames实验室),访问学者;
4、2008.12-2018.12 华南理工大学材料科学与工程学院,副教授;
5、2017.11-2018.11 新加坡南洋理工大学,访问学者;
6、2019.1-至今 华南理工大学材料科学与工程学院,教授。
教育经历
1. 2000.9-2003.6 华南理工大学材料科学与工程学院,攻读工学博士学位;
2. 1997.9-2000.3 华南理工大学机械工程学院,攻读工学硕士学位;
3. 1992.9-1996.6 湘潭大学机械系,攻读工学学士学位。
获奖、荣誉称号
1)2016年6月,荣获华南理工大学2014-2015学年度“本科教学优秀二等奖”;
2)2015年6月,荣获华南理工大学2013-2014学年度“本科教学优秀二等奖”;
3)2014年10月,荣获华南理工大学材料科学与工程学院2013-2014学年度“ 拓璞奖教金”;
4)2011年4月,荣获华南理工大学2009-2010学年度“本科教学优秀二等奖”;
5)2010年2月,荣获第六届广东省高等教育省级教学成果一等奖(排名第五)(获奖成果:《机械工程材料综合实验》的改革与实践,备注:获奖者:朱敏,曾美琴,欧阳柳章、王辉、钟喜春);
社会、学会及学术兼职
现任全国热处理标准化技术委员会委员,广东省机械工程学会热处理分会秘书长,广东省热处理协会副秘书长。
研究领域
1、磁性功能材料及器件;
2、材料表面技术。
科研项目
1、国家自然科学基金面上项目:“基于低温热压烧结与晶界扩散的LaFeSi基磁制冷复合材料的制备及性能调控” (主持,60万元,2019.01-2022.12);
2、 国家重点研发计划项目“高功率窄线宽光纤激光器”子课题2(中华人民共和国科技部):“高性能镱高掺激光玻璃及光纤研究与制备” (主持,100万元,2017.07-2020.06);
3、广东省自然科学基金面上项目:“新型高性能La-Fe-Si基磁制冷复合材料的低温热压烧结制备与性能调控” (主持,10万元,2017.05-2020.05);
4、广州市科技计划项目(科学研究专项):“LaFeSi基磁制冷材料的SPS制备与性能调控研究” (主持,20万元,2019.4-2022.3);
5、广东省自然科学基金面上项目:“钆基原位复相多晶磁制冷材料及其宽温区大磁热效应” (主持,10万元,2015.01-2018.01);
6、中央高校基本业务费资助项目:“高性能镱高掺激光玻璃及玻璃光纤研究与制备”(主持,3万元,2017.4-2018.12);
7、广州市科技计划项目:“资源节约型高性能稀土永磁材料晶界调控与晶界扩散技术研究”(主持,8万元,2014.01-2016.06);
8、广东省科技计划项目:“基于相变储热的超导节能不锈钢散热器的研发及产业化”(第二单位主持,20万元(总经费80万元),2014.10-2016.09);
9、中央高校科研基本科研业务费华南理工大学重点项目,“新型磁热材料及绿色节能磁制冷技术研究”(主持人,20万元,2012.1-2013.12);
10、教育部留学回国人员科研启动基金项目:“Gd基合金的固溶强化、磁热性能及耐蚀特性研究” (主持,3万元,2012.9-2013.9);
11、广东省现代几何与力学计量技术重点实验室开放基金项目:“金属薄膜厚度标准样品的制备与应用研究”(主持人,10万元,2012.6-2013.6);
12、广东省教育部产学研结合项目:“稀土改性高性能铁氧体环保橡胶磁的研究及产业化“(第三单位主持,10万元(总经费100万元),2010.01-2011.12);
13、中央高校科研基本科研业务费华南理工大学面上项目:“铁锰基磁制冷材料的磁热效应与热/磁滞机理研究”(主持人, 7万元,2010.1-2011.12);
14、广东省教育部产学研结合项目:”粘结钕铁硼-铁氧体复合磁体流动温压成形及其产业化关键技术“ (主持,30万元,2009.10-2011.12);
15、广东省科技计划项目:”新型铁锰基室温磁制冷材料及其应用特性研究“(主持,8万元,2007.09-2009.08);
16、广东省自然科学基金(博士启动)项目:”稀土过渡族室温磁制冷材料的研究“(主持,2万元,2006.01-2007.12)。
发表论文
2019
1)X.C. Zhong*, X.L. Feng, J.H. Huang, D.L. Jiao, H. Zhang, W.Q. Qiu, Z.W. Liu, R.V. Ramanujan, A bimodal particle size distribution enhances mechanical and magnetocaloric properties of low-temperature hot pressed Sn-bonded La0.8Ce0.2(Fe0.95Co0.05)11.8Si1.2 bulk composites, Journal of Magnetism and Magnetic Materials, 469 (2019) 133–137.
2)L.Z. Zhao, H.Y. Yu, W. Li, X.F. Liao, J.S. Zhang, X.C. Zhong, Z.W. Liu, K.P. Su, J.M. Grenechec, Magnetic characteristics of the ferromagnetic Fe-rich clusters in bulk amorphous Nd60Fe30Al10 alloy, Journal of Magnetism and Magnetic Materials, 469 (2019) 151–154.

2018
3)X.T. Dong, X.C. Zhong*, D.R. Peng, J.H. Huang, H. Zhang, D.L. Jiao, Z.W. Liu, R.V. Ramanujan, La0.8Ce0.2(Fe0.95Co0.05)11.8Si1.2/Sn42Bi58 magnetocaloric composites prepared by low temperature hot pressing, Journal of Alloys and Compounds, 737 (2018) 568–574
4)X.C. Zhong*, H.Y. Mo, X.W. Huang, X.Y. Shen, X.L. Feng, D.L. Jiao, Z.W. Liu, Effects of crystallization treatment on the structure and magnetic properties of Gd65Fe25Zn10 alloy ribbons for magnetic refrigeration, Journal of Alloys and Compounds, 730 (2018) 493–500.
5)X.C. Zhong*, X.Y. Shen, H.Y. Mo, D.L. Jiao, Z.W. Liu, W.Q. Qiua, H. Zhang, R.V. Ramanujan, Table-like magnetocaloric effect and large refrigerant capacity in Gd65Mn25Si10-Gd composite materials for near room temperature refrigeration. Materials Today Communications, 14 (2018) 22–26.
6)X. C. Zhong* (钟喜春), X. L. Feng (封小亮), J. H. Huang (黄焦宏), H. Zhang (张虎), Y. L. Huang (黄有林), Z. W. Liu (刘仲武), and D. L. Jiao (焦东玲), Microstructure evolution and large magnetocaloric effect of La0.8Ce0.2(Fe0.95Co0.05)11.8Si1.2 alloy prepared by strip-casting and annealing. AIP Advances, 8 (2018) 048102-1~ 048102-11.
7)H.Y. Mo, X.C. Zhong*, D.L. Jiao, Z.W.Liu, H. Zhang, W.Q. Qiu, R.V. Ramanujan, Table-like magnetocaloric effect and enhanced refrigerant capacity in crystalline Gd55Co35Mn10 alloy melt spun ribbons. Physics Letters A, 382 (2018) 1679–1684.
8)W. Li, L.Z. Zhao, Q. Zhou, X.C. Zhong, Z.W. Liu, Effects of grain boundary configuration and characteristics on the demagnetization process and coercivity of anisotropic NdFeB magnets, Computational Materials Science, 148 (2018) 38–45.
9)J.S. Zhang, M.L. Zhong, L.Z. Zhao, X.F. Liao, H.X. Zeng, X.C. Zhong, H.Y. Yu, Z.C. Zhong, Z.W. Liu, Reducing Dy content by Ce substitution in nanocomposite Nd-Dy-Fe-B/α-Fe alloys, Journal of Alloys and Compounds, 766 (2018) 1061–1066.
10)X.C. Zhong*, X.L. Feng, J.H. Huang, Y.L. Huang, Z.W. Liu, R.V. Ramanujan, Influence of particle size on the mechanical properties and magnetocaloric effect of La0.8Ce0.2(Fe0.95Co0.05)11.8Si1.2/Sn composites, Journal of Magnetism and Magnetic Materials, 463 (2018) 23–27.
11)X.F. Liao, L.Z. Zhao, J.S. Zhang, X.C. Zhong, D.L. Jiao, Z.W. Liu, Enhanced formation of 2:14:1 phase in La-based rare earth-iron-boron permanent magnetic alloys by Nd substitution, Journal of Magnetism and Magnetic Materials, 464 (2018) 31–35.
12)Y.F. Shang, Y.T. Cao, E. Agurgo Balfour, H. Fu, X.C. Zhong, Ahmed A. El-Gendy, R.L. Hadimani, Y. Luo, The effect of Co substitution on the magnetic and magnetocaloric properties of Gd3Ru, Journal of Magnetism and Magnetic Materials, 451 (2018) 368–372.
13)W. Li, Q. Zhou, L.Z. Zhao, Q.X. Wang, X.C. Zhong, Z.W. Liu, Micromagnetic simulation of anisotropic grain boundary diffusion for sintered Nd-Fe-B magnets, Journal of Magnetism and Magnetic Materials, 451 (2018) 704–709.
14)Qing Zhou, Wei Li, Yuan Hong, Lizhong Zhao, Xichun Zhong, Hongya Yu, Lili Huang, Zhongwu Liu, Microstructure improvement related coercivity enhancement for sintered NdFeB magnets after optimized additional heat treatment, Journal of Rare Earths (2018), doi: 10.1016/j.jre.2017.11.007.
15)D.L. Jiao, X.C. Zhong, W.Q. Qiu, H. Zhang, Z.W. Liu, and G.Q. Zhang, Structure and Electric Conduction in Pulsed Laser-Deposited ZnO Thin Films Individually Doped with N, P, or Na, Journal of Eectronic Materials, https://doi.org/10.1007/s11664-018-6196-7.
16)Hui Zhang, Zhongwu Liu, Xichun Zhong, Dongling Jiao, and Wanqi Qiu, Molecular dynamics simulation of crystallization and non-crystallization of Lennard-Jones particles without setting any initial Bravais lattice, arXiv:1805.07767v1 [cond-mat.mtrl-sci]
17)X.C. Zhong*, H.Y. Yu, Z.W. Liu, R.V. Ramanujan, Influence of crystallization treatment on structure, magnetic properties and magnetocaloric effect of Gd71Ni29 melt-spun ribbons, Current Applied Physics, https://doi.org/10.1016/j.cap.2018.07.007.
18)D. R. Peng, X. C. Zhong*, J. H. Huang, H. Zhang, Y. L. Huang, X. T. Dong, D. L. Jiao, Z. W. Liu, R. V. Ramanujan, Novel processing of Cu-bonded La-Ce-Fe-Co-Si magnetocaloric composites for magnetic refrigeration by low-temperature hot pressing, MRS Communications (2018), doi:10.1557/mrc.2018.105.
19)YiXu Wang, Hu Zhang*, EnKe Liu, XiChun Zhong, Kun Tao, MeiLing Wu, ChengFen Xing, YaNing Xiao, Jian Liu, and Yi Long, Outstanding comprehensive performance of La(Fe,Si)13Hy/In composite with durable service life for magnetic refrigeration, Advanced Electronic Materials (2018), DOI: 10.1002/aelm.**.

2017
20)Z.Y. Zhang, L.Z. Zhao, X.C. Zhong, D.L. Jiao, Z.W. Liu, Phase precipitation behavior of melt-spun ternary Ce2Fe14B alloy during rapid quenching and heat treatment, Journal of Magnetism and Magnetic Materials, 441 (2017) 429–435.
21)X. Y. Shen, X. C. Zhong*, X. W. Huang, H. Y. Mo, X. L. Feng, Z. W. Liu and D. L. Jiao, Achieving a table-like magnetocaloric effect and large refrigerant capacity in in situ multiphase Gd65Mn25Si10 alloys obtained by crystallization treatment, J. Phys. D: Appl. Phys. 50 (2017) 035005.

2016
22)M. Hussain, L.Z. Zhao, C. Zhang, H.Y. Yu, X.C. Zhong, Z.W. Liu*, Composition-dependent magnetic properties of melt spun La or/and Ce substituted nanocomposite NdFeB alloys, Physica B, 483 (2016) 69-74
23)M. Hussain, J. Liu, X. C. Zhong, Z.W. Liu*, Composition related magnetic properties and coercivity mechanism for melt spun [(La0.5Ce0.5)1-xREx]10Fe84B6 (RE=Nd or Dy) nanocomposite alloys, Journal of Magnetism and Magnetic Material, 399 (2016) 26–31.
24)X.C. Zhong*, X.W. Huang, X.Y. Shen, H.Y. Mo, Z.W. Liu, Thermal stability, magnetic properties and large refrigerant capacity of ternary Gd55Co35M10 (M=Mn, Fe and Ni) amorphous alloys. Journal of Alloys and Compounds, 682 (2016) 476 – 480.
25)X.C. Zhong*, X.L. Feng, X.W. Huang, X.Y. Shen, Z.W. Liu, Structure and magnetocaloric effect of La0.7Ce0.3(Fe0.92Co0.08)11.4Si1.6 bulk alloy prepared by powder metallurgy. Journal of Alloys and Compounds, 685 (2016) 913–916.
26)X.C. Zhong*, X.Y. Shen, Z.W. Liu, Magnetocaloric properties, microhardness and corrosion resistance of Gd100–xZrx alloys. J. Rare Earths, 34(9) (2016) 889–894.
27)L.Z. Zhao, Y. Hong, X.G. Fang, Z.G. Qiu, X.C. Zhong, X.S. Gao, Z.W. Liu*, High coercivity microcrystalline Nd-Fe-Co-Al-B bulk magnets prepared by direct copper mold casting, Journal of Magnetism and Magnetic Materials, 408 (2016) 152–158.
28)钟喜春*,胡庚,郭兴家,刘仲武,流动温压成型黏结钕铁硼/锶铁氧体复合磁体的研究,材料工程,44 (4) (2016) 9–13.

2015
29)Q. Zhou, Z.W. Liu*, X.C. Zhong, G.Q. Zhang, Properties improvement and structural optimization of sintered NdFeB magnets by non-rare earth compound grain boundary diffusion, Materials and Design, 86 (2015) 114–120
30)D.Y. Feng, Z.W. Liu*, Z.G. Zheng, X.C. Zhong, G.Q. Zhang, Hard magnetic properties and thermal stability for TbCu7-type SmCo6.4Si0.3Zr0.3 alloys with Sm substituted by various rare-earth elements, IEEE Trans. Magn, 51 (10) (2015) **
31)Z.W. Liu*, L.Z. Zhao, S.L. Hu, H.Y. Yu, X.C. Zhong, and X.X. Gao, Coercivity and thermal stability enhancement for spark plasma sintered nanocrystalline Nd-Fe-B magnets with Dy2O3 and Zn additions, IEEE Trans Magn, 51(11) (2015) **.
32)X.C. Zhong*, H.C. Tian, S.S. Wang, Z.W. Liu, Z.G. Zheng, D.C. Zeng, Thermal, magnetic and magnetocaloric properties of Fe80?xMxB10Zr9Cu1 (M = Ni, Ta; x = 0, 3, 5) amorphous alloys, Journal of Alloys and Compounds, 633 (2015) 188-193
33)X.C. Zhong*, Z.W. Liu, J.X. Min, Karl A. Gschneidner Jr., V. K. Pecharsky, Magnetic properties and magnetic entropy changes of MRE2Co7 compounds, Science China-Physics Mechanics & Astronomy, 58 (2015) 597501.
34)J.X. Min, X.C. Zhong*, V. Franco, H.C. Tian, Z.W. Liu, Z.G. Zheng, D.C. Zeng, Structure, magnetic properties and giant magnetocaloric effect of Tb4Gd1Si2.035Ge1.935Mn0.03 alloy. Intermetallics, 57 (2015) 68–72.
35)H.C. Tian, X.C. Zhong*, Z.W. Liu, Z.G. Zheng, J.X. Min, Achieving table-like magnetocaloric effect and large refrigerant capacity around room temperature in Fe78?xCexSi4Nb B12Cu1 (x=0–10) composite materials, Materials Letters, 138 (2015) 64-66
36)J.W. Lai, Z.G. Zheng, X.C. Zhong, V. Franco, R. Montemayor, Z.W. Liu, D.C. Zeng, Table-like magnetocaloric effect of Fe88–xNdxCr8B4 composite materials, Journal of Magnetism and Magnetic Materials, 390 (2015) 87–90.
37)朱忠仁, 余红雅, 郑志刚, 钟喜春, 刘仲武, 曾德长, 匡同春, 铜模铸造法制备Mn1.15Fe0.85P0.55Si0.45 化合物及其磁相变研究, 功能材料, 46 (8) (2015) 08119–08123.
38)张启沛, 钟喜春*, 李春明, 匡同春, 郭燕伶, 磁过滤电弧离子镀TiN 薄膜的制备及性能研究, 真空科学与技术学报, 35(4) (2015) 444–450.
39)张启沛, 钟喜春*, 李春明, 郭燕伶, 余赟, 焦东玲, 匡同春, 电弧离子镀与磁控溅射复合技术制备Ti/Ti/TiAlN复合涂层的组织结构与力学性能, 真空科学与技术学报, 35(2) (2015) 195–200.
40)钟喜春*, 胡庚, 郭兴家, 刘仲武, 粘结剂对粘结钕铁硼/锶铁氧体复合磁体磁性能的影响, 材料科学与工艺, 23(5) (2015) 94–98.
41)钟喜春*,胡庚,郭兴家,刘仲武,固化条件对粘结复合磁体磁性能和抗压强度的影响,材料热处理学报,36(SI) (2015) 16–21.

2014
42)J.X. Min, X.C. Zhong*, Z.W. Liu, Z.G. Zheng, D.C. Zeng, Magnetic properties and magnetocaloric effects of Gd-Mn-Si ribbons in amorphous and crystalline states. Journal of Alloys and Compounds, 606 (2014) 50–54.

43)Xi-Chun Zhong*, Zhong-Wu Liu, De-Chang Zeng, Karl A. Gschneidner Jr., Vitalij K. Pecharsky, Magnetocaloric effect of Pr2Fe17-xMnx alloys, Rare Metals, 33 (5) (2014) 552–555.
44)X.C. Zhong*, H.C. Tian, P.F. Tang, Z.W. Liu, Z.G. Zheng, D.C. Zeng, Structure, magnetic properties and magnetocaloric effects of Fe50Mn15-xCoxNi35 alloys. Science China-Phys. Mech. Astron., 57(3) (2014) 437–441.
45)M.T. Liu, X.C. Zhong*, J. Wang, Z.W. Liu, W.Q. Qiu, D.C. Zeng, Microstructure and thermal stability of MoSi2-CoNiCrAlY nanocomposite feedstock prepared by high energy ball milling, Surface and Coatings Technology, 239 (2014)78–83.
46) J.W. Lai, Z.G. Zheng, R. Montemayor, X.C. Zhong, Z.W. Liu, D.C. Zeng, Magnetic phase transitions and magnetocaloric effect of MnCoGe1?xSix Journal of Magnetism and Magnetic Materials, 372(2014) 86–90.
47)钟喜春*, 高贝贝, 王珊珊, 郑志刚, 刘仲武, 曾德长, 余红雅, Gd-Co二元非晶及晶态合金的磁性和大磁热效应, 功能材料, 45(SI) (2014) 111–115.
48)刘名涛, 钟喜春*, 刘仲武, 曾德长, 李周, 张国庆, 等离子喷涂制备MoSi2-CoNiCrAlY纳米复合涂层的结构与性能, 材料工程, (5) (2014) 17–22.
49)钟明龙, 刘仲武*, 焦东玲, 钟喜春, 余红雅, 曾德长, 大面积α-Fe2O3纳米带的热氧化制备及其磁性能,功能材料, 45 (6) (2014) 06126–06130.


2013
50)X.C. Zhong*, B. B. Gao, Z. W. Liu, Z. G. Zheng, D. C. Zeng. Amorphous and crystallized (Gd4Co3)100–xBx alloys for magnetic refrigerants working in the vicinity of 200 K, Journal of Alloys and Compounds, 553 (2013) 152–156.
51)X. C. Zhong*, P. F. Tang, B. B. Gao, J. X. Min, Z. W. Liu, Z. G. Zheng, D. C. Zeng, H. Y. Yu, W. Q. Qiu. Magnetic properties and magnetocaloric effects in amorphous and crystalline Gd55Co35Ni10 ribbons, Science China-Physics, Mechanics & Astronomy, 56 (2013) 1096–1099.
52)X.C. Zhong*, J.X. Min, Z.W. Liu, Z.G. Zheng, D.C. Zeng, V. Franco, R.V. Ramanujan, Low hysteresis and large room temperature magnetocaloric effect of Gd5Si2.05–xGe1.95–xNi2x (2x = 0.08, 0.1) alloys, Journal of Applied Physics, 113 (2013) 17A916.
53)Z. G. Zheng, X. C. Zhong, J. L. Zhang, Z. W. Liu*, V. Franco, D. C. Zeng*. Magnetic properties and magnetocaloric effects in GdCo9Si2 compound with multiple magnetic phase transitions, Journal of Applied Physics, 113 (2013) 17A938.
54)Z. G. Zheng*, X. C. Zhong, Z. W. Liu, D. C. Zeng*, V. Franco, J. L. Zhang. Magnetocaloric effect and critical behavior of amorphous (Gd4Co3)1?xSix alloys, Journal of Magnetism and Magnetic Materials, 343 (2013) 184–188.
55)M. L. Zhong, Z.W. Liu*, H. Y. Yu, X. C. Zhong, D. C. Zeng, R. V. Ramanujan. Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts, Journal of Nanoscience and Nanotechnology, 13 (2013) 1525–1529.
56)闵继雄, 钟喜春*, 郑志刚 ,刘仲武, 曾德长, 余红雅, 邱万奇, Gd99.75Fe0.25合金的大磁热效应及应用特性研究, 稀有金属材料与工程, 42(2) (2013) 362–365.


2012
57)Y. L. Huang, Z. W. Liu, X. C. Zhong, H. Y. Yu, X. X. Gao, J. Zhu, D. C. Zeng, Diffusion of Nd-rich phase in the spark plasma sintered and hot deformed nanocrystalline NdFeB magnets, Journal of Applied Physics, 111 (2012) 033913.

58)X. H. Cui, Z. W. Liu, X.C. Zhong, H. Y. Yu, D. C. Zeng. Melt spun and suction cast Nd-Fe-Co-B-Nb hard magnets with high Nd contents, Journal of Applied Physics, 111 (2012) 07B508.
59)X. C. Zhong*, P. F. Tang, Z. W. Liu, D. C. Zeng, Z. G. Zheng, H. Y. Yu, W. Q. Qiu, H. Zhang, and R. V. Ramanujan, Large magnetocaloric effect and refrigerant capacity in Gd–Co–Ni metallic glasses, Journal of Applied Physics, 111 (2012) 07A919.
60)Z. G. Zheng, X.C. Zhong, H. Y. Yu, V. Franco, Z. W. Liu, D. C. Zeng, The magnetocaloric effect and critical behavior in amorphous Gd60Co40–xMnx alloys, Journal of Applied Physics, 111 (2012) 07A922.
61)D. Y. Chen, Y. Y. Meng, D. C. Zeng, Z. W. Liu, H. Y. Yu, X. C. Zhong, CTAB-assisted low temperature synthesis of SrFe12O19 ultrathin hexagonal platelets and its formation mechanism, Materials Letters, 76 (2012) 84–86.
62)Y. S. Wu, D. C. Zeng, Z. W. Liu, W. Q. Qiu, H. Y. Yu, X.C. Zhong, S. Z. Li, Y. X. Ma. Microstructure and sliding wear behavior of pseudo-alloy PS45/CuAl8 composite coating sprayed by HVAA technique, Rare Metals, 31 (2012) 204–208.
63)Z. W. Liu, Y. L. Huang, H. Y. Huang, X. C. Zhong, H. Y. Yu, D. C. Zeng. Isotropic and Anisotropic Nanocrystalline NdFeB-based Magnets Prepared by Spark Plasma Sintering and Hot Deformation, ISAM2011, Key Engineering Materials, 510-511 (2012) 307–314.
64)Z. W. Liu, Y. M. Li, J. Wang, X. C. Zhong, H. Y. Yu, D. C. Zeng. Improved soft magnetic properties and thermal stability for Fe82.65Cu1.35Si2B14 alloys with Nb, Zr, Ta or Co addition, Materials Science and Technology, 28(8) (2012) 987–990.
65)Y. L. Huang, Z. W. Liu, X. C. Zhong, H. Y. Yu, D. C. Zeng. NdFeB-based Magnets Prepared from Nanocrystaline Powders with Various Compositions and Particle Sizes by Spark Plasma Sintering, Powder Metallurgy, 55 (2012) 124–129.
66)X. C. Zhong*, J. X. Min, Z. G. Zheng, Z. W. Liu, D. C. Zeng. Critical behavior and magnetocaloric effect of Gd65Mn35?xGex (x=0, 5, and 10) melt-spun ribbons, Journal of Applied Physics, 112 (2012) 033903.
67)唐鹏飞, 钟喜春*, 郑志刚, 余红雅, 邱万奇, 曾德长, 刘仲武, Nb掺杂Gd合金的大磁热效应和显微硬度增强, 稀有金属材料与工程, 41 (6) (2012) 1090–1093.
68)高贝贝, 钟喜春*, 郑志刚, 刘仲武, 曾德长, 熔体快淬La1–xCex(Fe0.92Co0.08)11.4Si1.6(x=0, 0.3)合金的结构和大磁熵变, 材料研究学报, 26(5) (2012) 511–514.
69)钟喜春*, 黄有林, 刘云鹤, 刘仲武, 曾德长, NdFeB磁粉对粘结NdFeB/锶铁氧体复合磁体性能的影响, 电子元件与材料, 31(10) (2012) 41–44.
70)邱万奇, 潘建伟, 刘仲武, 余红雅, 钟喜春, 曾德长, 电镀铬?金刚石复合过渡层提高金刚石膜/基结合力, 无机材料学报, 27 (2012) 205–208.


2011
71)X. C. Zhong*, P. F. Tang, Z. W. Liu, D. C. Zeng, Z. G. Zheng, H. Y. Yu, W. Q. Qiu, Magnetic properties and large magnetocaloric effect in Gd-Ni amorphous ribbons for magnetic refrigeration applications in intermediate temperature range, Journal of Alloys and Compounds, 509 (2011) 6889–6892.
72)X. C. Zhong*, M. Zou, H. Zhang, Z. W. Liu, D. C. Zeng, K. A. Gschneidner, Jr., and V. K. Pecharsky. Crystal structure and magnetic properties of R5Sn4 alloys, where R is Tb, Dy, Ho, and Er, Journal of Applied Physics, 109 (2010) 07A917.
73)Z. W. Liu, H. Y. Huang, X. X. Gao, H. Y. Yu, X. C. Zhong, J. Zhu, D.C. Zeng. Microstructure and property evolution of isotropic and anisotropic NdFeB magnets fabricated from nanocrystalline ribbons by spark plasma sintering and hot deformation, Journal of Physics D: Applied Physics, 44 (2011) 025003.
74)唐鹏飞, 钟喜春*, 郑志刚, 余红雅, 邱万奇, 刘仲武, 曾德长, Gd55Fe30P15非晶条带的磁热效应, 磁性材料与器件, 42 (1) (2011) 12–15.
75)K. P. Su, Z. W. Liu, H. Y. Yu, X. C. Zhong, W. Q. Qiu, D. C. Zeng. A feasible approach for preparing remanence enhanced NdFeB based permanent magnetic composites, Journal of Applied Physics, 109 (2011) 07A710.
76)Z. G. Zheng, X. C. Zhong, H. Y. Yu, Z. W. Liu, D. C. Zeng. Magnetic phase transitions and magnetocaloric properties of (Gd12–xTbx)Co7 alloys, Journal of Applied Physics, 109 (2010) 07A919.
77)Y. H. Hou, Y. J. Zhao, Z. W. Liu, H. Y. Yu, X. C. Zhong, W. Q. Qiu, and D. C. Zeng. First-principles investigation of Zn(Cd) doping effects on the electronic structure and magnetic properties in CoFe2O4, Journal of Applied Physics, 109 (2011) 07A502.
78)X. C. Zhong*, H. Zhang, M. Zou, Z. W. Liu, D. C. Zeng, K.A. Gschneidner Jr., V.K. Pecharsky, Influences of heat treatment on the structure and magnetic properties of Gd5Sn4 alloy for magnetic refrigeration, Supplemental Proceedings: Volume 1: Materials Processing and Energy Materials, TMS (The Minerals, Metals & Materials Society), 2011, 331–338.
79)K. P. Su, Z. W.Liu, X. X. Shan, Z. G. Zheng, X. C. Zhong, H. Y. Yu, D. C. Zeng. Synthesis and characterization of core-shell structured bimagnetic cobalt-coated iron nanoparticles, 11th IUMRS International Conference in Asia, September 25-28, 2010, Qingdao, China, Materials Science Forum, 688 (2011) 370–375.
80)Z. G. Zheng, X. C. Zhong, K. P. Su, H. Y. Yu, Z. W. Liu, D. C. Zeng, Magnetic properties and large magnetocaloric effect in amorphous Gd-Al-Fe alloys for magnetic refrigeration, 11th IUMRS International Conference in Asia, September 25-28, 2010, Qingdao, China, Science China-Physics, Mechanics & Astronomy, 54 (2011) 1267–1270.
81)L. Ma, Z. W. Liu, H. Y. Yu, X. C. Zhong, Y. P. Zeng, D. C. Zeng, X. P. Zhong, High coercivity FePtSiN films with L10-FePt nanoparticles embedded in a Si-rich matrix, Intermag 2011, IEEE Trans. Magn. 47 (2011) 3505–3508.
82)Y. S. Wu, D. C. Zeng, Z. W. Liu, W. Q. Qiu, X. C. Zhong, H. Y. Yu, S. Z. Li. Microstructure and sliding wear behavior of nanostructured Ni60–TiB2 composite coating sprayed by HVOF technique, Surface and Coatings Technology, 206 (2011) 1102–1108.
83)Y. S. Wu, W. Q. Qiu, H. Y. Yu, X. C. Zhong, Z. W. Liu, D. C. Zeng, S. Z. Li. Cycle oxidation behavior of Ni60-TiB2 nanostructured composite coating sprayed by HVOF technique, Applied Surface Science, 257 (2011) 10224–10232.
84)M. L. Zhong, Z. W. Liu, X. C. Zhong, H. Y. Yu, D.C. Zeng. Thermal growth and nanomagnetism of the quasi-one dimensional iron oxide, Journal of Materials Science and Technology, 27 (2011) 985–990.
85)黄华勇, 刘仲武, 李晓强, 高学绪, 余红雅, 钟喜春, 朱洁, 曾德长, 放电等离子火花烧结纳米晶NdFeB组织分区和磁性能, 磁性材料与器件, 42(2) (2011) 9–12.
86)吴姚莎, 邱万奇, 余红雅, 钟喜春, 刘仲武, 曾德长, 李尚周, PS45/CuAl8伪合金复合涂层高温循环氧化行为, 材料研究学报, 25(2) (2011) 129–134.
87)单晓璇, 刘仲武, 余红雅, 钟喜春, 邱万奇, 曾德长, 化学共沉法制备的高饱和磁化强度Fe65Co35合金纳米颗粒, 磁性材料及器件, 42(2) (2011) 20–24.
88)李建三, 曾德长, 钟喜春, 刘正义, 谢金强, 稀土Dy掺杂SrFe12O19永磁铁氧体的结构与性能, 功能材料, 42(S) (2011) 271-274+279.
89)吴姚莎, 邱万奇, 余红雅, 钟喜春, 刘仲武, 曾德长 ,李尚周, 纳米Ni60-TiB2复合涂层的超音速火焰喷涂制备及600℃循环氧化特性, 材料研究学报, 25(4) (2011) 391–398.
90)吴姚莎, 邱万奇, 余红雅, 钟喜春, 刘仲武, 曾德长, 李尚周, 高能球磨制备Ni60-TiB2纳米金属基陶瓷结构喂料及其结构特性, 稀有金属材料与工程, 40 (S2) (2011)507–511.
91)邱万奇, 陈星婷, 刘仲武, 钟喜春, 余红雅, 曾德长, 镶嵌结构界面金刚石涂层研究进展, 真空科学与技术学报, 31(2011) 691–695.
92)刘云鹤, 钟喜春*, 黄有林, 刘仲武, 曾德长, 余红雅, 邱万奇, 流动温压成型时间和温度对粘结钕铁硼/铁氧体复合磁体性能的影响, 磁性材料与器件, 42(6)(2011) 42–46.


2010
93)M. L. Zhong, D. C. Zeng, Z.W. Liu, X. C. Zhong, H. Y. Yu, W. Q. Qiu. Synthesis, growth mechanism and gas sensing properties of large-scale CuO nanowires, Acta Materialia. 58 (2010) 5926–5932.
94)Y. H. Hou, Y. J. Zhao, Z.W. Liu, H.Y. Yu, X.C. Zhong, W.Q. Qiu, D.C. Zeng and L.S. Wen. Structural, electronic and magnetic properties of partially inverse spinel CoFe2O4: a first-principles study, Journal of Physics D: Applied Physics, 43 (2010) 445003.
95)X. C. Zhong*, P. F. Tang, X. Zhou, Z. G. Zheng, H. Y. Yu, D. C. Zeng, Z. W. Liu, Effects of Ni, Si, and Cr doping on the magnetic refrigerant metal, Gd, In: Proceeding of the 4th International Conference on Magnetic Refrigeration at Room Temperature (Thermag IV), edited by P.W. Egolf, Aug 23-27, 2010, Baotou, Inner Mngolia, China, P191-200
96)邱万奇, 蔡明, 钟喜春, 余红雅, 刘仲武, 曾德长, 电弧离子镀AlN薄膜的光致发光性能的研究, 材料研究与应用, 4(4) (2010) 572–576.
97)容胜忠, 余红雅, 钟喜春, 刘仲武, 曾德长, 谢金强, 基于YF30预烧料的La-Co掺杂锶铁氧体的磁性能研究, 磁性材料及器件, 41 (2010) 48-50~55.
98)罗洁, 陈川, 刘仲武, 余红雅, 钟喜春, 曾德长, 闻立时, Ta添加对纳米复合NdFeB合金的影响机理研究, 磁性材料与器件, 41 (2010) 12–15.
99)游仕平, 钟喜春, 游世辉, 曾德长, 闻立时, NR/ SBR并用橡胶基磁敏橡胶的制备及性能的研究, 弹性体, 20 (1) (2010) 1–4.
100)郑志刚, 余红雅, 钟喜春, 刘仲武, 曾德长, 室温磁制冷工质金属Gd的防腐研究[J].磁性材料与器件, 41 (3) (2010) 19–21.
101)郑志刚, 钟喜春, 余红雅, 苏昆朋, 刘仲武, 曾德长, Fe3O4磁性纳米颗粒的制备及性能表征, 电子元件与材料, 29 (7) (2010) 27-29,39.
102)郑志刚, 钟喜春, 唐鹏飞, 余红雅, 邱万奇, 刘仲武, 曾德长, 熔体快淬Gd96V4合金的磁性能和磁热效应, 材料研究与应用, 4(4) (2010) 504–508.
103)瞿全炎, 邱万奇, 曾德长, 钟喜春, 刘正义, 弯曲磁过滤电流对TiN膜质量的影响, 材料科学与工艺18 (2010) 690–694.
104)钟喜春*, 张虎, M. Zou, Q. Cao, 刘仲武, 曾德长, 余红雅, 邱万奇, K.A. Gschneidner Jr., V.K. Pecharsky, 热处理对Gd5Sn4合金结构与磁性能的影响, 功能材料,(2010年第七届中国功能材料及其应用学术会议论文集第3分册), p429–432.



2009
105)Z. G. Zheng, X. C. Zhong, H. Y. Yu, D. C. Zeng and Z.W. Liu, Design and Performance Study of the active magnetic refrigerator for room temperature application, International Journal of Refrigeration, 32 (2009) 78–86.
106)X. L. Chai, D. C. Zeng, G. X. Liu, H.Y. Yu, X. C. Zhong, Z. W. Liu, Influence of current amplitude on the nonlinear asymmetric ac volt–ampere characteristics in amorphous ribbons with GMI effect, Journal of Magnetism and Magnetic Materials, 321 (2009) 1272–1275.
107)Z. W. Liu, D. C. Zeng, R. V. Ramanujan, X. C. Zhong, H. A. Davies, Exchange interaction in rapidly solidified nanocrystalline RE-(Fe/Co)-B hard magnetic alloys, Journal of Applied Physics, 105 (2009) 07A736.
108)C. F. Zhang, X. C. Zhong, H. Y. Yu, Z. W. Liu and D. C. Zeng, Effects of Cobalt Doping on Microstructure and Magnetic Properties of Mn-Zn Ferrites Prepared by Co-precipitation Method, Physica B: Physics of Condensed Matter, 404 (2009) 2327–2331.
109)张存芳, 余红雅, 钟喜春, 曾德长, 刘仲武, 邬曙国, 单连军, 高能球磨法制备Mn-Zn铁氧体材料的研究, 材料导报, 23 (6) (2009) 8–10.
110)柴秀丽, 曾德长, 刘桂雄, 余红雅, 钟喜春, 刘文杰, 带材非对称巨磁阻抗效应的建模及数值计算, 华南理工大学学报(自然科学版), 37(2) (2009) 35–39, 44.


2008年及之前
111)Z.G. Zheng, X.C. Zhong, Y.H. Zhang, H.Y. Yu, D.C. Zeng, Synthesis, structure and magnetic properties of nanocrystalline ZnxMn1-xFe2O4 prepared by ball milling, Journal of Alloys and Compounds, 466 (2008) 377–382.
112)郑志刚, 钟喜春, 张亚辉, 曾德长, 赵杰, 邬曙国, 黄冠伟, 单连军, 纳米锰锌铁氧体的制备与结构特性, 北京科技大学学报, 30(5) (2008) 527–531.
113)曾德长, 郑志刚, 钟喜春, 余红雅, 黄伟东, 室温磁致冷技术应用研究进展, 日用电器, 1 (2008) 50–55.
114)潘涵, 魏兴钊, 钟喜春, 朱伟恒, 许麟康, 海上石油钻井管线空泡腐蚀导致穿孔的失效分析, 兵器材料科学与工程, 31 (3) (2008) 66–70.
115)郑志刚, 钟喜春, 余红雅, 曾德长, 黄伟东, 磁致冷永磁高强磁场的仿真及其优化, 磁性材料及器件, 39(6) (2008) 54–57.
116)魏兴钊, 钟喜春, 朱伟恒, 焦东玲, 许麟康, 门式起重机变速机轴断裂分析, 理化检验(物理分册)3 (2008) 157–161.
117)柴秀丽, 曾德长, 刘桂雄, 余红雅, 钟喜春, 刘文洁, 非晶纳米晶带材巨磁阻抗磁传感器特性分析, 传感器与微系统, 27(9) (2008) 63–65.
118)于登云, 张亚辉, 钟喜春, 曾德长, 锡铜共晶合金焊料的机械性能, 材料研究与应用, 1(2) (2007) 127–131.
119)魏兴钊, 钟喜春, 朱伟恒, 曾德长, 许麟康, 建筑用卷扬机制动轮失效分析, 金属热处理, 32(增刊) (2007) 353–356.
120)X. C. Zhong*, D. C. Zeng, and Z. J. Luo, Study on structure and magnetic entropy changes of Ce2-xPrxFe16.5Co0.5 alloys. Rare Metals, 25 (2006) 626–629.
121)罗志坚, 钟喜春*, 曾德长, 张亚辉, Pr2Fe17-xAlx 系列化合物的结构与磁熵变, 稀有金属, 30(4) (2006) 538–541.
122)钟喜春*, 曾德长, 刘正义, 魏兴钊, Er2–xCexFe17金属间化合物的磁熵变研究, 材料科学与工程学报, 24(4) (2006) 489–492, 497.
123)X.C. Zhong*, D.C. Zeng and Z.Y. Liu, Magnetic entropy changes of Ce2Fe16.5Co0.5 intermetallic compound, 2006年全国首届电磁材料及器件学术会议论文集(四川 绵阳), 2006年10月, P46–47.
124)钟喜春*, 刘正义, 曾德长, 张锦, 魏兴钊, Er2–xPrxFe17磁致冷合金在室温区的磁熵变研究, 稀有金属材料与工程, 34(7) (2005) 1065–1068.
125)钟喜春*, 曾德长, 刘正义, 魏兴钊, 室温磁致冷合金Pr2Fe17–xCox的磁性和磁熵变, 稀有金属材料与工程, 34(10) (2005) 1537–1540.
126)钟喜春*, 曾德长, 刘正义, 张锦, Ce2Fe16.5Co0.5合金的磁熵变研究, 功能材料, 36(3) (2005)348–349, 356.
127)焦东玲, 钟喜春, 魏兴钊, 陈灵, 许麟康, 柴油发电机组排气阀断裂失效分析, 理化检验(物理分册) (2005年全国失效分析学术会议专辑)41(增刊) (2005) 191–193.
128)曾德长, 钟喜春, 魏兴钊, 陈灵, 许麟康, 气门导管断裂失效分析, 理化检验(物理分册)(2005年全国失效分析学术会议专辑)41(增刊) (2005) 342–344.
129)向兴华, 焦东玲, 魏兴钊, 钟喜春, 许麟康, H13钢制热挤压模爆裂失效分析, 理化检验(物理分册) (2005年全国失效分析学术会议专辑)41(增刊) (2005) 432–444.
130)钟喜春*,曾德长,刘正义,张 锦,魏兴钊. Er2–xRxFe17(R=Pr,Ce)化合物的结构与磁熵变研究, 功能材料, 35(增刊) (2004) 808–812.
131)钟喜春*, 曾德长, 刘正义, 魏兴钊, 顾正飞, 罗承萍, [Co80Fe10Ni10]20Cu80–xCrx块体合金的巨磁电阻效应研究, 功能材料, 35(1) (2004) 42–45.
132)曾德长, 钟喜春, 刘正义, 环保型室温磁致冷工质的结构与性能研究, 日用电器, 5 (2003)16–17.
133)钟喜春*, 曾德长, 刘正义, 魏兴钊, 室温磁致冷材料及技术的研究进展, 材料科学与工程学报, 21(2) (2003) 302–306.
134)刘正义, 钟喜春, 曾德长, Er2–xRxFe17–yCoy铁基化合物的结构、磁性和磁熵变, 全国新材料及其应用学术会议文集,(江苏.江阴), 2003年11月:P2~3
135)钟喜春*, 曾德长, 刘正义, 魏兴钊, 室温磁致冷材料的选用原则及制备技术, 材料科学与工程, 20(3) (2002) 441–444.
136)顾正飞, 刘正义, 曾德长, 钟喜春, 魏兴钊, 罗承萍, 高温淬火Co72.7C11.8Si15.5磁性合金的结构与相转变, 中国有色金属学报, 11(1) (2001) 74–78.
科研创新
授权发明专利(29 项)
[1] 钟喜春,张启沛,邱万奇,匡同春,曾德长,刘仲武,余红雅. 一种工磨具材料表面的TiN双层镀层及其制备方法, 授权公告日:2016.03.02,中国,专利号:ZL **2.1
[2] 钟喜春,张启沛,曾德长,邱万奇,匡同春,刘仲武,余红雅. 一种切削刀具材料表面的Ti/TiN/TiAlN复合镀层及其制备方法,授权公告日:2016.01.06,中国,专利号:ZL **8.6
[3] 钟喜春,闵继雄,曾德长,刘仲武,余红雅,邱万奇. 一种Gd-Mn基非晶磁制冷材料及其制备方法,授权公告日:2014.12.3,中国,专利号:ZL **7.9
[4] 钟喜春,刘名涛,曾德长,刘仲武,邱万奇,余红雅,李尚周. 一种高温合金表面纳米复合涂层及其制备方法.,授权公告日:2014.6.11,中国,专利号:ZL**8.9
[5] 钟喜春,曾德长,刘仲武,邱万奇,余红雅. 一种稀土锡基低温磁制冷材料及其制备方法,授权公告日:2013.7.3,中国,专利号:ZL **4.X
[6] 匡同春,谭超林,蔡盼盼,李雪萍,邓阳,周克崧,雷淑梅,钟喜春,曾德长. 一种等离子辅助电弧技术制备TiCN成分梯度硬质涂层的方法,授权公告日:2018.04.13,中国,专利号:ZL**5.9
[7] 余红雅,朱忠仁,郑志刚,曾德长,钟喜春,刘仲武. 一种Mn-Fe-P-Si磁制冷材料及其制备方法,授权公告日: 2016.10.5,中国,专利号:ZL **8.2
[8] 刘仲武 ,赵利忠,郑志刚,李伟,王刚,钟喜春,余红雅,曾德长. 一种钕铁硼永磁材料及制备方法与磁场辅助直接铸造装置,授权公告日:2016.10.5,中国,专利号:ZL **8.4
[9] 刘仲武,邓向星,肖志瑜,余红雅,钟喜春,曾德长,郑志刚,王刚.一种各向异性纳米晶钕铁硼磁体及其制备方法与应用,授权公告日:2016.8.17,中国,专利号:ZL **9.5
[10] 曾德长,檀竹才,郑志刚,钟喜春,刘仲武,余红雅. 一种MnFePSi基室温磁制冷材料及其制备方法,授权公告日:2016.6.22,中国,专利号:ZL**3.7
[11] 曾德长,吴姚莎,李尚周,刘仲武,余红雅,钟喜春.高性能Ni基合金-TiB2纳米粉末及其制备方法,授权公告日:2016. 03.02,中国,专利号:ZL **0.3
[12] 曾德长,高贝贝,郑志刚,钟喜春,刘仲武,余红雅,金智渊,金勇,高云. 一种Gd基磁制冷材料及其制各方法,授权公告日:2014.10.8,中国,专利号:ZL **2.5
[13] 曾德长,柏占,郑志刚,钟喜春,刘仲武,余红雅,邱万奇. 摆动式室温磁制冷机,授权公告日: 2014.5.7,中国,专利号:ZL **7.9
[14] 曾德长,柏占,郑志刚,钟喜春,刘仲武,余红雅,邱万奇. 一种室温磁制冷机用永磁体系统,授权公告日:2014.4.2,中国,专利号:ZL **0.0
[15] 曾德长,吴姚莎,李尚周,刘仲武,余红雅,钟喜春.高性能Ni基合金-TiB2纳米粉末及其制备方法,授权公告日:2014. 02. 05,中国,专利号:ZL **0.3
[16] 曾德长,吴姚莎,李尚周,刘仲武,余红雅,钟喜春.Ni基合金-TiB2纳米涂层的制备方法,授权公告日:2014. 02.19,中国,专利号:ZL **5.5
[17] 刘仲武,苏昆鹏,邱万奇,余红雅,钟喜春,曾德长. 一种交换耦合双相纳米复合永磁颗粒及其制备方法,授权公告日:2013.7.3,中国,专利号:ZL **1.3
[18] 刘仲武,钟明龙,钟喜春,邱万奇,余红雅,焦东玲,曾德长. 一种纳米结构三氧化钼的制备方法,授权公告日:2013.8.28,中国,专利号:ZL **4.7
[19] 邱万奇,曾艳祥,钟喜春,余红雅、刘仲武,曾德长. 一种铜-金刚石复合镀层及其制备方法,授权公告日:2013.7.17,中国,专利号:ZL **7.8
[20] 邱万奇,潘建伟,吴强,刘仲武,钟喜春,余红雅,曾德长. 一种钢铁基镶嵌金刚石涂层及其制备方法, 授权公告日:2013.2.13,中国,专利号:ZL **4.0
[21] 邱万奇,刘仲武,钟喜春,余红雅,曾德长,贺礼贤. 一种铜基镶嵌结构界面金刚石涂层及其制备方法,授权公告日:2012.5.30,中国,专利号:ZL **0.3
[22] 曾德长,陈灵,邱万奇,钟喜春,余红雅,林敏. 一种工模具材料表面的TiAlN/TiN薄膜及其制备方法,授权公告日:2012.05.30,中国,专利号:ZL **7.4
[23] 邱万奇,孙歌,钟喜春,余红雅,刘仲武,曾德长. 一种热作模具钢的低温渗碳方法,授权公告日:2012.5.23,中国,专利号:ZL **1.9
[24] 邱万奇,曾艳祥,余红雅,钟喜春,刘仲武,曾德长. 一种铜-铬-钼三元合金涂层及其制备方法,授权公告日:2012.2.1,中国,专利号:ZL **9.6
[25] 邱万奇,刘仲武,孙歌,余红雅,钟喜春,曾德长,蔡明. 一种低温掺杂发光氮化铝薄膜及其制备方法,授权公告日:2011.12.28,中国,专利号:ZL **6.4
[26] 曾德长,郑志刚,钟喜春,余红雅,黄伟东. 一种往复式室温磁制冷机,授权公告日:2010.09.29,中国,专利号:ZL **0.8
[27] 曾德长,廖伟强,钟喜春,张亚辉,邱万奇. 非晶合金流量传感器,授权公告日:2008.10.08,中国,专利号:ZL **5.6
[28] 曾德长,余红雅,刘正义,钟喜春,张亚辉,谢金强,赵杰,刘鹏. 一种各向异性永磁铁氧体的制备方法,授权公告日:2008.02.13,中国,专利号:ZL **8.6
[29] 曾德长,钟喜春,刘正义. 一种稀土-铁基室温磁制冷材料及其制备方法,授权公告日:2007.04.25,中国,专利号:ZL **2.2


授权实用新型专利(4 项)
[1] 钟喜春,张启沛,曾德长,邱万奇,匡同春,刘仲武,余红雅. 一种切削刀具材料表面的复合镀层, 授权公告日:2013.12.25,中国,专利号:ZL **2.X
[2] 刘仲武,赵利忠,郑志刚,李伟,王刚,钟喜春,余红雅,曾德长. 一种钕铁硼永磁材料的磁场辅助直接铸造装置,授权公告日:2014.09.10,中国,专利号:ZL **9.1
[3] 曾德长,柏占,郑志刚,钟喜春,刘仲武,余红雅,邱万奇. 一种室温磁制冷机永磁体系统, 授权公告日:2012.5.30,中国,专利号:ZL **3.9
[4] 曾德长,柏占,郑志刚,钟喜春,刘仲武,余红雅,邱万奇. 摆动式室温磁制冷机,授权公告日:2012.5.9,中国,专利号:ZL **7.6


申请发明专利(15 项)
[1] 钟喜春,彭得然,董旭涛,刘仲武,焦东玲,邱万奇,张辉. 一种基于晶界扩散技术的LaFeSi基磁制冷复合块体材料及其制备方法,申请日期:2018.01.05,中国,申请号:**2.1
[2] 钟喜春,董旭涛,彭得然,刘仲武,焦东玲,邱万奇. 一种La-Fe-Si基磁制冷复合材料及其制备方法,申请日期:2017.8.25,中国,申请号:**1.1
[3] 钟喜春,封小亮,刘仲武,焦东玲,邱万奇. 一种La-Fe基磁制冷复合材料及其制备方法,申请日期:2016.8.25,中国,申请号:**8.4
[4] 钟喜春,沈小艳,刘仲武,焦东玲,邱万奇. 一种复合磁制冷材料及其制备方法,申请日期:2016.12.13,中国,申请号:**03.4
[5] 钟喜春,黄旭文,沈小艳,刘仲武,焦东玲,张辉,邱万奇. 一种Gd-Co基非晶纳米晶磁制冷材料及其制备方法,申请日期:2016.12.20,中国,申请号:**2.1
[6] 钟喜春,刘名涛,刘仲武,曾德长,邱万奇,李尚周. 一种纳米复合结构颗粒喂料及其制备方法,申请日期:2012.08.24,中国,申请号:**9.4
[7] 钟喜春,唐鹏飞、曾德长、刘仲武、邱万奇、余红雅. 一种Gd基室温磁制冷材料及其制备方法,申请日期:2011.07.05,中国,申请号:**3.6
[8] 钟喜春,刘云鹤、黄有林、曾德长、刘仲武、余红雅、邱万奇. 一种粘结复合磁体及其制备方法,申请日期:2011.08.17,中国,申请号:**8.5
[9] 钟喜春,刘名涛,刘仲武,曾德长,邱万奇,李尚周. 一种纳米复合结构颗粒喂料及其制备方法,申请日期:2012.08.24,中国,申请号:**9.4
[10] 钟喜春,曾德长,刘正义. 一种铁基室温磁制冷材料及其制备方法,申请日期:2004.07.2,中国,申请号:**1.8
[11] 刘仲武,张振扬,钟喜春,邱万奇. 一种双合金纳米晶稀土永磁体及其制备方法,申请日期:2017.04.21,中国,申请号:**9.7
[12] 邱万奇,甄永辉,王书林,刘仲武,钟喜春,焦东玲. 一种镶嵌结构界面α?氧化铬涂层及其制备方法,申请日期:2017.04.18,中国,申请号:**9.3
[13] 邱万奇,王书林,钟喜春,刘仲武 ,焦东玲. 一种纳米α?氧化铝/氧化铬复合涂层及其制备方法,申请日期:2017.02.24,中国,申请号:**3.5
[14] 刘仲武,周庆,钟喜春,郑志刚. 一种改善钕铁硼磁体性能的固体扩散工艺,申请日期:2014.12.5,中国,申请号:**8.9
[15] 刘仲武,钟明龙,钟喜春,邱万奇,余红雅,焦东玲,曾德长. 一种一维金属氧化物纳米材料的制备方法,申请日期:2011.07.21,中国,申请号:**3.2
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