Follow
Chaoyi Zhu
Chaoyi Zhu
Tesla
Verified email at tesla.com - Homepage
Title
Cited by
Cited by
Year
Discovery of high-entropy ceramics via machine learning
K Kaufmann, D Maryanovsky, WM Mellor, C Zhu, AS Rosengarten, ...
Npj Computational Materials 6 (1), 42, 2020
1692020
Amorphization in extreme deformation of the CrMnFeCoNi high-entropy alloy
S Zhao, Z Li, C Zhu, W Yang, Z Zhang, DEJ Armstrong, PS Grant, ...
Science advances 7 (5), eabb3108, 2021
1682021
Dislocation-type evolution in quasi-statically compressed polycrystalline nickel
C Zhu, T Harrington, GT Gray III, KS Vecchio
Acta Materialia 155, 104-116, 2018
1362018
Crystal symmetry determination in electron diffraction using machine learning
K Kaufmann, C Zhu, AS Rosengarten, D Maryanovsky, TJ Harrington, ...
Science 367 (6477), 564-568, 2020
1192020
Determination of geometrically necessary dislocations in large shear strain localization in aluminum
C Zhu, T Harrington, V Livescu, GT Gray III, KS Vecchio
Acta Materialia 118, 383-394, 2016
822016
Aged metastable high-entropy alloys with heterogeneous lamella structure for superior strength-ductility synergy
C Zhang, C Zhu, P Cao, X Wang, F Ye, K Kaufmann, L Casalena, ...
Acta Materialia 199, 602-612, 2020
802020
Design of non-equiatomic high entropy alloys with heterogeneous lamella structure towards strength-ductility synergy
C Zhang, C Zhu, T Harrington, K Vecchio
Scripta Materialia 154, 78-82, 2018
792018
Extraordinary strength-ductility synergy in a heterogeneous-structured â-Ti alloy through microstructural optimization
S Shin, C Zhu, C Zhang, KS Vecchio
Materials Research Letters 7 (11), 467-473, 2019
692019
Non-equiatomic FeNiCoAl-based high entropy alloys with multiscale heterogeneous lamella structure for strength and ductility
C Zhang, C Zhu, K Vecchio
Materials Science and Engineering: A 743, 361-371, 2019
552019
Strong and ductile FeNiCoAl-based high-entropy alloys for cryogenic to elevated temperature multifunctional applications
C Zhang, Q Yu, YT Tang, M Xu, H Wang, C Zhu, J Ell, S Zhao, ...
Acta Materialia 242, 118449, 2023
542023
Multifunctional non‐equiatomic high entropy alloys with superelastic, high damping, and excellent cryogenic properties
C Zhang, C Zhu, T Harrington, L Casalena, H Wang, S Shin, KS Vecchio
Advanced Engineering Materials 21 (1), 1800941, 2019
422019
Design, fabrication and characterization of FeAl-based metallic-intermetallic laminate (MIL) composites
H Wang, T Harrington, C Zhu, KS Vecchio
Acta Materialia 175, 445-456, 2019
372019
Investigation of the shear response and geometrically necessary dislocation densities in shear localization in high-purity titanium
C Zhu, V Livescu, T Harrington, O Dippo, GT Gray III, KS Vecchio
International Journal of Plasticity 92, 148-163, 2017
372017
Cold-workable refractory complex concentrated alloys with tunable microstructure and good room-temperature tensile behavior
C Zhang, BE MacDonald, F Guo, H Wang, C Zhu, X Liu, Y Kang, X Xie, ...
Scripta Materialia 188, 16-20, 2020
342020
Novel remapping approach for HR-EBSD based on demons registration
C Zhu, K Kaufmann, KS Vecchio
Ultramicroscopy 208, 112851, 2020
312020
Grain boundary precipitation of tantalum and NiAl in superelastic FeNiCoAlTaB alloy
C Zhang, C Zhu, S Shin, L Casalena, K Vecchio
Materials Science and Engineering: A 743, 372-381, 2019
312019
Strong and ductile refractory high-entropy alloys with super formability
C Zhang, H Wang, X Wang, YT Tang, Q Yu, C Zhu, M Xu, S Zhao, R Kou, ...
Acta Materialia 245, 118602, 2023
302023
Deep neural network enabled space group identification in EBSD
K Kaufmann, C Zhu, AS Rosengarten, KS Vecchio
Microscopy and Microanalysis 26 (3), 447-457, 2020
282020
Phase mapping in EBSD using convolutional neural networks
K Kaufmann, C Zhu, AS Rosengarten, D Maryanovsky, H Wang, ...
Microscopy and Microanalysis 26 (3), 458-468, 2020
262020
Deformation and fracture evolution of FeAl-based metallic-intermetallic laminate (MIL) composites
H Wang, C Zhu, KS Vecchio
Acta Materialia 194, 496-515, 2020
232020
The system can't perform the operation now. Try again later.
Articles 1–20