Jin-Cheng Wang
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Selective laser melting of Ti–35Nb composite from elemental powder mixture: Microstructure, mechanical behavior and corrosion behavior
JC Wang, YJ Liu, P Qin, SX Liang, TB Sercombe, LC Zhang
Materials Science and Engineering: A 760, 214-224, 2019
Microstructural homogeneity and mechanical behavior of a selective laser melted Ti-35Nb alloy produced from an elemental powder mixture
J Wang, Y Liu, CD Rabadia, SX Liang, TB Sercombe, LC Zhang
Journal of Materials Science & Technology 61, 221-233, 2021
Understanding melt pool characteristics in laser powder bed fusion: An overview of single-and multi-track melt pools for process optimization
J Wang, R Zhu, Y Liu, L Zhang
Advanced Powder Materials 2 (4), 100137, 2023
Improved trade-off between strength and plasticity in titanium based metastable beta type Ti-Zr-Fe-Sn alloys
CD Rabadia, YJ Liu, CH Zhao, JC Wang, SF Jawed, LQ Wang, LY Chen, ...
Materials Science and Engineering: A 766, 138340, 2019
Fe73. 5Si13. 5B9Cu1Nb3 metallic glass: rapid activation of peroxymonosulfate towards ultrafast Eosin Y degradation
JC Wang, Z Jia, SX Liang, P Qin, WC Zhang, WM Wang, TB Sercombe, ...
Materials & Design 140, 73-84, 2018
Activation of peroxymonosulfate by Fe78Si9B13 metallic glass: the influence of crystallization
Z Jia, JC Wang, SX Liang, WC Zhang, WM Wang, LC Zhang
Journal of Alloys and Compounds 728, 525-533, 2017
Comparison of microstructure and mechanical behavior of Ti-35Nb manufactured by laser powder bed fusion from elemental powder mixture and prealloyed powder
JC Wang, YJ Liu, SX Liang, YS Zhang, LQ Wang, TB Sercombe, ...
Journal of Materials Science & Technology 105, 1-16, 2022
Chemically dealloyed Fe-based metallic glass with void channels-like architecture for highly enhanced peroxymonosulfate activation in catalysis
JC Wang, SX Liang, Z Jia, WC Zhang, WM Wang, YJ Liu, J Lu, LC Zhang
Journal of Alloys and Compounds 785, 642-650, 2019
Additive manufacturing of titanium alloys
LC Zhang, J Wang, Y Liu, Z Jia, SX Liang
Encyclopedia of Materials: Metals and Alloys 1, 256-274, 2022
Advances in additively manufactured titanium alloys by powder bed fusion and directed energy deposition: Microstructure, defects, and mechanical behavior
HY Ma, JC Wang, P Qin, YJ Liu, LY Chen, LQ Wang, LC Zhang
Journal of Materials Science & Technology 183, 32-62, 2024
Non-layer-wise fracture and deformation mechanism in beta titanium cubic lattice structure manufactured by selective laser melting
YJ Liu, JS Zhang, XC Liu, X Wu, JC Wang, YS Zhang, LQ Wang, ...
Materials Science and Engineering: A 822, 141696, 2021
Tailoring deformation and superelastic behaviors of beta-type Ti-Nb-Mn-Sn alloys
SF Jawed, YJ Liu, JC Wang, CD Rabadia, LQ Wang, YH Li, XH Zhang, ...
Journal of the Mechanical Behavior of Biomedical Materials 110, 103867, 2020
Corrosion and passivation behavior of Ti-6Al-4V surfaces treated with high-energy pulsed laser: A comparative study of cast and 3D-printed specimens in a NaCl solution
WQ Lu, YJ Liu, X Wu, XC Liu, JC Wang
Surface and Coatings Technology 470, 129849, 2023
On the importance of nano-oxide control in laser powder bed fusion manufactured Ni-based alloys to enhance fracture properties
M Peters, EG Brodie, S Thomas, L Djumas, M Brameld, M Salasi, Z Quadir, ...
Materialia 32, 101958, 2023
Revised semiempirical approach to predict the occurrence of twinning in titanium alloys
CD Rabadia, SF Jawed, J Wang, M Siddhpura, A Siddhpura
ACS omega 6 (49), 34056-34064, 2021
Heat-activated persulfate by Fe-based metallic glass: a comparative study of two dyes
SX Liang, JC Wang, LC Zhang
Materials Science Forum 921, 13-20, 2018
Stabilizing 3D-printed metal alloys
LC Zhang, JC Wang
Science 383 (6683), 586-587, 2024
Fatigue performance of beta titanium alloy topological porous structures fabricated by laser powder bed fusion
ZY Wu, YJ Liu, X Wu, XC Liu, JC Wang, Q Wang
Journal of Materials Research and Technology, 2024
Detecting Irradiation Defects in Materials: A Machine Learning Approach to Analyze Helium Bubble Images
Z Zheng, S Qiu, X Yue, J Wang, J Hou
Journal of Nuclear Materials, 155117, 2024
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