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Qihong Fang
Qihong Fang
Professor, State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University
Verified email at hnu.edu.cn
Title
Cited by
Cited by
Year
Recent advances on high‐entropy alloys for 3D printing
C Han, Q Fang, Y Shi, SB Tor, CK Chua, K Zhou
Advanced Materials 32 (26), 1903855, 2020
3322020
Probing the phase transformation and dislocation evolution in dual-phase high-entropy alloys
Q Fang, Y Chen, J Li, C Jiang, B Liu, Y Liu, PK Liaw
International Journal of Plasticity 114, 161-173, 2019
2152019
Effect of lattice distortion on solid solution strengthening of BCC high-entropy alloys
Z Wang, Q Fang, J Li, B Liu, Y Liu
Journal of Materials Science & Technology 34 (2), 349-354, 2018
1972018
Transformation induced softening and plasticity in high entropy alloys
J Li, Q Fang, B Liu, Y Liu
Acta Materialia 147, 35-41, 2018
1782018
Effect of grinding wheel spindle vibration on surface roughness and subsurface damage in brittle material grinding
J Chen, Q Fang, P Li
International Journal of Machine Tools and Manufacture 91, 12-23, 2015
1582015
Microstructure and mechanical properties of equimolar FeCoCrNi high entropy alloy prepared via powder extrusion
B Liu, J Wang, Y Liu, Q Fang, Y Wu, S Chen, CT Liu
Intermetallics 75, 25-30, 2016
1502016
A molecular dynamics investigation into the mechanisms of subsurface damage and material removal of monocrystalline copper subjected to nanoscale high speed grinding
J Li, Q Fang, Y Liu, L Zhang
Applied Surface Science 303, 331-343, 2014
1392014
Mechanical behaviors of AlCrFeCuNi high-entropy alloys under uniaxial tension via molecular dynamics simulation
J Li, QH Fang, B Liu, YW Liu, Y Liu
RSC advances 6 (80), 76409-76419, 2016
1372016
Preparation of superfine-grained high entropy alloy by spark plasma sintering gas atomized powder
Y Liu, J Wang, Q Fang, B Liu, Y Wu, S Chen
Intermetallics 68, 16-22, 2016
1352016
Subsurface damage mechanism of high speed grinding process in single crystal silicon revealed by atomistic simulations
J Li, Q Fang, L Zhang, Y Liu
Applied Surface Science 324, 464-474, 2015
1322015
Study of nanoindentation mechanical response of nanocrystalline structures using molecular dynamics simulations
J Li, J Guo, H Luo, Q Fang, H Wu, L Zhang, Y Liu
Applied Surface Science 364, 190-200, 2016
1172016
Microstructures and mechanical properties of ductile NbTaTiV refractory high entropy alloy prepared by powder metallurgy
W Guo, B Liu, Y Liu, T Li, A Fu, Q Fang, Y Nie
Journal of Alloys and Compounds 776, 428-436, 2019
1162019
Size-dependent interaction between an edge dislocation and a nanoscale inhomogeneity with interface effects
QH Fang, YW Liu
Acta Materialia 54 (16), 4213-4220, 2006
1102006
Precipitation behavior of selective laser melted FeCoCrNiC0. 05 high entropy alloy
R Zhou, Y Liu, B Liu, J Li, Q Fang
Intermetallics 106, 20-25, 2019
992019
Unraveling the dislocation–precipitate interactions in high-entropy alloys
J Li, H Chen, Q Fang, C Jiang, Y Liu, PK Liaw
International Journal of Plasticity 133, 102819, 2020
972020
Investigation into nanoscratching mechanical response of AlCrCuFeNi high-entropy alloys using atomic simulations
Z Wang, J Li, QH Fang, B Liu, L Zhang
Applied Surface Science 416, 470-481, 2017
932017
A numerical study of ultraprecision machining of monocrystalline silicon with laser nano-structured diamond tools by atomistic simulation
H Dai, G Chen, C Zhou, Q Fang, X Fei
Applied Surface Science 393, 405-416, 2017
932017
A novel supersaturated medium entropy alloy with superior tensile properties and corrosion resistance
A Fu, B Liu, W Lu, B Liu, J Li, Q Fang, Z Li, Y Liu
Scripta Materialia 186, 381-386, 2020
822020
Size-dependent elastic interaction of a screw dislocation with a circular nano-inhomogeneity incorporating interface stress
QH Fang, YW Liu
Scripta Materialia 55 (1), 99-102, 2006
812006
High-throughput simulation combined machine learning search for optimum elemental composition in medium entropy alloy
J Li, B Xie, Q Fang, B Liu, Y Liu, PK Liaw
Journal of Materials Science & Technology 68, 70-75, 2021
802021
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