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Innovative Research Team of Microstructure Calculation and Properties Study of Precious (Rare) Metal Materials of Yunnan Province

2021-02-23 13:53  Hits:[]

Champion personal information:

Xiao-Long zhou, Male, Professor, the Ministry of Science and Technology of new product review experts, "Electrical materials" editorial board members, presided over and participated in National Natural Science Foundation of China、National Natural Science Foundation of Yunnan Province、National High-tech R&D Program (863 Program)、National Key Basic Research Program of China (973 Program) Pre-Research、National Key Technologies R&D Program of China、The National Key Technology R&D Program、NSFC - Yunnan Joint Fund Project、National Key Technologies R&D Program of Yunnan Province、Enterprises and other projects commissioned more than 10 items. Xiao-Long zhou has published more than 100 academic papers and authorized more than 40 patents, he also access to a second prize of Natural Science and Technology in Yunnan Province and co-published a scholarly work.

Team introduction

The team is mainly engaged in dilute and nonferrous metals and its composite materials, compounds in situ synthesis of synthetic materials research. The research work on the relationship between the precipitation behavior of the second element and the interphase in the dilute and nonferrous metal alloy system. The mainly work focus on the following direction:

The microstructures of the dilute and nonferrous metals form thermodynamics and the dynamic process, the means and method of regulation, and the relationship between the formation and evolution of microstructures and crystallography and performance;

The characterization of electron and atom of microstructure of rare and nonferrous metal materials, the formation mechanism, the evolution law and the control means of microstructure in the preparation and processing process, and its influence on the micro-properties and macroscopic properties of the materials;

The regulation and stability of the noble metal nano-composites during the in- situ reaction synthesis of rare-precious metal alloys, and the characterization of nano-noble metal activity and catalytic properties;

The strengthening of the phase nucleation in situ reaction synthesis of metal matrix composites, the growth of the thermodynamic conditions and the dynamic process and enhanced particle size control techniques, as well as the characterization of microstructure of enhanced phase and matrix interface, and the effect of interface microstructure on mechanical, physical and chemical properties of rare and nonferrous metal alloys or composites.

 

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