Area of research
Mechanical Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Nanocrystalline material, Crystallization, Amorphous metal, Metallurgy, and Metal.
Enhanced Antimicrobial and Biomedical Properties of Fe-Based Bulk Metallic Glasses Through Ag Addition
Improving the plasticity of transition-metal-based high-entropy bulk metallic glasses via Ag-induced phase separation
Development of new all–metal FeCoZrAl amorphous alloys for room–temperature magnetic refrigeration application
Effects of the Melt Temperature on Cluster Structures and Mechanical Properties of FeCoNi‐Based High‐Entropy Bulk Metallic Glasses
Mechanisms of plasticity enhancement in FeCoNi-SiB-Cu high-entropy bulk metallic glass via rejuvenation treatments
Preheating Temperature Effects on Microstructure–Property Relationships in Laser-Deposited Fe-Based Amorphous Coatings
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
Effect of magnetic field-assisted melt-spinning on the crystallization behavior and soft magnetic properties of Fe85.25B11.25P2Cu1.5 nanocrystalline alloy with high Fe and Cu contents
Effect of Magnetic Field-Assisted Melt-Spinning on the Crystallization Behavior and Soft Magnetic Properties of Fe85.25b11.25p2cu1.5 Nanocrystalline Alloy with High Fe and Cu Contents
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
Improved Plasticity of Fe25Co25Ni25(Si0.3B0.7)25 High Entropy Bulk Metallic Glass through the Addition of Cu