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华南理工大学先进金属与电磁材料研究团队依托材料科学与工程学院金属材料科学与工程系,主要从事永磁、软磁材料、磁致冷材料、热磁材料、磁性吸波材料等传统磁性材料与器件的应用基础研究与应用研究,同时开展金属材料及其制备与微观分析、新型纳米材料与器件以及功能薄膜与硬质涂层等方面的研究,在材料、机械与装备失效分析方面有二十多年经验。

团队现有成员5名,包括教授(博士生导师)2名,副教授(硕士生导师)1名。在读材料加工工程学科博士和硕士研究生40多人。

团队实验条件完善,可以满足磁性材料、薄膜材料及金属材料的制备和表征需要。致力于打造“设施一流、管理完善、运转高效”的高水平实验室。【点击查看】

 
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最新论文  
  • [1] A dual-gradient transition layer design achieving three things at one stroke for thermal-sprayed ceramic/diamond-like carbon coatings: Microstructure, corrosion resistance, and tribological performance;

    [2] Defect-functionalized lubrication: In-situ modification strategy for high-performance self-lubricating thermal-sprayed ceramics coatings;

    [3] Enhanced high-frequency soft magnetic properties of flake-structured Y2Fe15.5Co0.5Si powders;

    [4] Mechanically alloyed ultrafine Fe-Si powders for soft magnetic composites;

    [5] On Dy-M (M = Al, Ni, and Cu) diffusion sources for enhancing coercivity and corrosion resistance of Nd–Fe–B magnets;

    [6] Progress on grain boundary diffused Nd-Fe-B magnets: Developing cost effective diffusion sources and improving service performance;

    [7] Simultaneously improving the permeability, core loss and frequency stability of Fe-based soft magnetic composite by optimizing the aspect ratio of reduced Fe powders;

    [8] Tailoring Microstructure Orientation and Magnetic Properties in AlNiCo Permanent Magnets by Controlled Withdrawal Rate in High-Rate Solidification;

    [9] Temperature-dependent grain boundary diffusion behavior of Nd-Dy-Al alloy in sintered Nd-Fe-B magnet;

    [10] Outstanding magnetic properties obtained by low temperature sintering of plasma-assisted ball-milled Mn-Zn ferrite powders;

    [11] Interface microstructure and electromagnetic properties of phosphorylated FeSiB@Fe3O4 amorphous soft magnetic composites via thermal decomposition;

    [12] Comparative study of Dy and Tb diffusion behavior in grain boundary diffusion processed Nd-Fe-B sintered magnets;

    [13] Different behaviors of binary rare earth-Al alloys for grain boundary diffusion of La and Ce-containing multi-main-phase magnets;

    [14] A tailored two-step process enabling high efficiency light rare earth diffusion in Ce-rich Nd-Ce-Fe-B magnet;

    [15] Overcoming Refractory REE2 Phase Bottleneck in High-Ce-Nd-Ce-Fe-B Magnets via Praseodymium-Induced Phase Transformation: Enabling Liquid-Phase Grain Boundary Diffusion of Dysprosium;

    [16] Regulation of the grain boundary CeFe2 phase via Cu addition for anisotropic Ce-Fe-B magnet fabrication;

    [17] Enhancing Mechanical Properties and Heat Resistance of Iron Powder Cores for Inductors by Epoxy-Modified Bismaleimide Resin Coating;

    [18] Excellent Microwave Absorption Properties in the C Band for the Nitrided Y2Fe12Co4Si/Parafilm Composites;

    [19] Experimental and theoretical investigations on the Y substituted and Cu doped nanocrystalline Ce-Fe-B alloys with enhanced hard magnetic properties and cost-effectiveness;

    [20] Performance of soft magnetic cores based on the mixture of carbonyl iron and amorphous powders;[21] Optimizing Ce-doped Nd-Fe-B magnets for high-efficient grain boundary diffusion of Tb-Fe alloy

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