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Fang TieHui

Published:2021-10-21

Research fields(required)

Nanometer metal material, surface treatment, metal strengthening and toughening, deformation mechanism.

 General information(required)

 

From September, 2002 to July, 2006, he studied materials forming and control engineering at the School of Materials Science and Engineering, Dalian University of Technology, and obtained a bachelor's degree. He studied the structure and properties of nano-alumina reinforced aluminum foam. From September 2006 to July 2008, he was admitted to the Research Group of Unbalanced Materials in the State (United) Key Laboratory of Institute of Metallurgy, Chinese Academy of Sciences, where he studied under Academician Lu Ke, majoring in materials science, and obtained his Ph.D., mainly studying the preparation method, structure and properties of gradient nanostructures, and deformation mechanism of gradient nanostructures.

Main professional experiences

2014.8-2021.4 Associate Research Fellow, Hunan University.

2021.5- present researcher at Wenzhou University.

Honors and Awards

1. Key technology research and development and industrialization of corrosion-resistant steel for super engineering, third prize of Hunan Science and Technology Progress Award, 2019. 2.2011 Top Ten Scientific and Technological Progress in China, Ministry of Science and Technology, 2011.

Undertake projects

1. From June 2009 to December 2012, he participated in the National Natural Science Foundation of China-Major Project (50890171), the design, preparation and performance of metal materials with multi-scale structure, with 3.2 million yuan; 2. From January, 2018 to December, 2020, he presided over the National Natural Science Foundation of China-Youth Fund Project (51701069): Research on the Toughening Mechanism of 316L Stainless Steel with Reverse Gradient Nanostructure, with a total amount of 240,000 yuan. 3. From August, 2014 to December, 2020, he was in charge of the special support plan of the Central High School-the plan of teachers' growth in young years (531107040867). Subject: 1) Repairing metal fatigue damage and prolonging fatigue life by rapid surface annealing; 2) Mechanism and optimization of grain size distribution affecting metal corrosion resistance; 3) Toughening mechanism and microscopic deformation mechanism of gradient amorphous structure, 250,000 yuan; 4. From January 2016 to December 2018, he participated in the National Natural Science Foundation of China-Youth Fund Project (51602100). The regulation of core-shell structure of material La2Ce2O7@La2Zr2O7 and its influence mechanism on thermophysical properties, 200,000 yuan; 5. From January, 2018 to December, 2020, he participated in the National Natural Science Foundation of China-Youth Fund Project (51634006), and studied the organization structure regulation and wear mechanism of Ti(C,N)-based cermet tool materials for high-speed cutting of high-strength aluminum alloy, with 240,000 yuan;

Academic achievements

1 Revealing extraordinary intrinsic tensile plasticity in gradient nano-grained copper, T.H. Fang, W.L. Li, N.R. Tao, K. Lu*. Science 2011, (331) 1587-1590

2 Tension-induced softening and hardening in gradient nanograined surface layer in copper, T.H. Fang, N.R. Tao, K. Lu*. Scr. Mater. 2014, (77) 17-20

3 Microstructure and mechanical properties of AISI 316L steel with an inverse gradient nanostructure fabricated by electro-magnetic induction heating. Q.Y. Long, J.X. Lu, T.H. Fang*, Mater. Sci. Eng. A, 2019,(75142-50

4 Effect of La content on infrared radiation performance of lanthanum-cerium oxides for high temperature application, J. Huang*, X. Zhang, T. Fang, B. Liu, T. Lv, Z. Mao. Opt. Mater. 2020,(108110211

5 Impact of surface gradient structures on mechanical properties of a dual-phase AlCrFe2(Ni0.85Co0.15)2 multi-component eutectic alloy. Q. Cheng, T.H. Fang*, P. Xie, Y. Zhao, J.H. You, X.D. Xu*. J. Alloys Compd. 2021,(882160591

6 Effects of recrystallization distribution on mechanical properties of 316L stainless steel. Lu Jiaxin, Chen chakun, Fang tiehui *. powder metallurgy materials science and engineering. 2018, (5) 475-481.

7 Preparation and anti-sintering properties of core-shell nano-powder of 7 La2Ce2O7@La2Zr2O7. Fang Tiehui, Zhang Xiukuang, Huang Jianping *, Liu Binbin, Lu Tiezheng. Journal of Hunan University Natural Science Edition. 2020,(6) 132-140.





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