Area of research
Mechanical Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Amorphous solid and Coercivity, with related work in Composite material, Nanocrystalline material, Amorphous metal. Notable publications include 'Microstructure and magnetic properties of FeSiCr soft magnetic powder cores with a MgO insulating layer prepared by the sol-gel method', 'Ultrathin, flexible, and high-strength Ni/Cu/metallic glass/Cu/Ni composite with alternate magneto-electric structures for electromagnetic shielding', and 'Improvement of soft magnetic properties of FeSiBPNb amorphous powder cores by addition of FeSi powder'.
Effect of transverse magnetic annealing on the surface texture and magnetization process of FeSiBNbCuP nanocrystalline alloys
Interpretable machine learning-assisted design of Fe-based nanocrystalline alloys with high saturation magnetic induction and low coercivity
Effects of Si addition on crystallization process and soft magnetic properties of high-Fe and high-Cu-content Fe–Si–B–P–Cu nanocrystalline alloys
Influence of P and C co-alloying on soft magnetic properties and crystallization behavior of FeSiBPCCu nanocrystalline alloys
Significant improving magnetic properties and thermal conductivity of FeBSiPCNbCu nanocrystalline powder cores by designing novel ZnO insulating layer
Development of FeCoMnAl multi-principal element alloys and soft magnetic powder cores with excellent magnetic properties and high temperature magnetic stability
Effect of Co Addition on the Heterogenous Gradient Structure, Magnetic Properties, and Nanocrystallization Process of Fesibpccu Nanocrystalline Alloys with High Fe and Cu Contents
Effects of Co Addition on Nanocrystallization Process and Magnetic Properties of High-Fe and Cu-Content Fesibpccu Nanocrystalline Alloys
Novel CoFeAlMn high-entropy alloys with excellentsoft magnetic properties and high thermal stability
Enhancing soft magnetic properties of FeSiBNbCu nanocrystalline powder cores by coating ZrO2 insulation layer
The effect of phosphate/TiO2 composite insulating layer on the high frequency magnetic properties of FeSiBPCNbCu nanocrystalline soft magnetic powder cores
Correlation Mechanism of Microstructure, Magnetic Domain, and Magnetic Softness of Fe-6.5 wt.%Si Composites with High Saturation
Soft magnetic properties and giant magneto-impedance effect of Co68.15Fe4.35Si12.5B15-Cr amorphous ribbons
Effect of ultralow Dy and Gd contents on surface crystallization and domain wall motion of FeCuSiBNbMo alloys
Microstructure and magnetic properties of FeSiCr soft magnetic powder cores with a MgO insulating layer prepared by the sol-gel method
The influence of FeNi nanoparticles on the microstructures and soft magnetic properties of FeSi soft magnetic composites
Optimizing soft magnetic properties by reducing internal defects and residual stress of Fe85-xSi9.6Al5.4Snx soft magnetic composites
Microstructure evolution and soft magnetic property optimization of core-shell FeSiBCCr@SiO2&ZrO2 amorphous magnetic powder cores
Enhanced magnetic properties of FeSiAl soft magnetic composites prepared by utilizing phosphate: PSA as insulating layer
Effect of transverse magnetic field annealing on the magnetic properties and microstructure of FeSiBNbCuP nanocrystalline alloys
Evolution of magnetic domain structure and magnetic properties of Fe-based nanocrystalline powder cores during transverse magnetic field annealing
Influence of microstructure and anisotropy on the high-frequency soft magnetic properties of nanocrystalline FeSiBNbCuP alloys
Effects of Nb microalloying on the magnetic properties and microstructure of Fe-Si-B-P-Cu-Nb nanocrystalline alloys prepared with pure and industrial raw materials
Effects of structural transformation on magnetic properties of AlCoFeCr high-entropy soft magnetic powder cores by adjusting Co/Fe ratio
Effect of Ge doping on the magnetic properties of Fe-6.5Si soft magnetic composites
Effect of Ge Addition on Magnetic Properties and Crystallization Mechanism of FeSiBPNbCu Nanocrystalline Alloy with High Fe Content
Effects of Structural Transformation on Magnetic Properties of Alcofecr High-Entropy Soft Magnetic Powder Cores by Adjusting Co/Fe Ratio
Ultrathin, flexible, and high-strength Ni/Cu/metallic glass/Cu/Ni composite with alternate magneto-electric structures for electromagnetic shielding
Enhanced high frequency properties of FeSiBPC amorphous soft magnetic powder cores with novel insulating layer
Enhanced Magnetic Properties of FeSiAl Soft Magnetic Composites Prepared by Utilizing PSA as Resin Insulating Layer