Подписаться
Zhe-Feng Zhang
Zhe-Feng Zhang
Institute of Metal Research, CAS
Нет подтвержденного адреса электронной почты
Название
Процитировано
Процитировано
Год
General relationship between strength and hardness
P Zhang, SX Li, ZF Zhang
Materials Science and Engineering: A 529, 62-73, 2011
11792011
Difference in compressive and tensile fracture mechanisms of Zr59Cu20Al10Ni8Ti3 bulk metallic glass
ZF Zhang, J Eckert, L Schultz
Acta Materialia 51 (4), 1167-1179, 2003
10682003
Functional gradients and heterogeneities in biological materials: Design principles, functions, and bioinspired applications
Z Liu, MA Meyers, Z Zhang, RO Ritchie
Progress in Materials Science 88, 467-498, 2017
7862017
Tensile ductility and necking of metallic glass
H Guo, PF Yan, YB Wang, J Tan, ZF Zhang, ML Sui, E Ma
Nature materials 6 (10), 735-739, 2007
6502007
Fracture mechanisms in bulk metallic glassy materials
ZF Zhang, G He, J Eckert, L Schultz
Physical review letters 91 (4), 045505, 2003
6282003
Enhanced strength and ductility of bulk CoCrFeMnNi high entropy alloy having fully recrystallized ultrafine-grained structure
SJ Sun, YZ Tian, HR Lin, XG Dong, YH Wang, ZJ Zhang, ZF Zhang
Materials & Design 133, 122-127, 2017
4232017
Microstructural evolution and mechanical properties of Cu–Al alloys subjected to equal channel angular pressing
S Qu, XH An, HJ Yang, CX Huang, G Yang, QS Zang, ZG Wang, SD Wu, ...
Acta Materialia 57 (5), 1586-1601, 2009
4062009
Deformation twinning in polycrystalline copper at room temperature and low strain rate
CX Huang, K Wang, SD Wu, ZF Zhang, GY Li, SX Li
Acta Materialia 54 (3), 655-665, 2006
3182006
Unified tensile fracture criterion
ZF Zhang, J Eckert
Physical review letters 94 (9), 094301, 2005
2932005
Fundamental factors on formation mechanism of dislocation arrangements in cyclically deformed fcc single crystals
P Li, SX Li, ZG Wang, ZF Zhang
Progress in Materials Science 56 (3), 328-377, 2011
2912011
Significance of stacking fault energy in bulk nanostructured materials: insights from Cu and its binary alloys as model systems
XH An, SD Wu, ZG Wang, ZF Zhang
Progress in Materials Science 101, 1-45, 2019
2762019
Crack initiation mechanism of extruded AZ31 magnesium alloy in the very high cycle fatigue regime
F Yang, SM Yin, SX Li, ZF Zhang
Materials Science and Engineering: A 491 (1-2), 131-136, 2008
2662008
Transition of twinning behavior in CoCrFeMnNi high entropy alloy with grain refinement
SJ Sun, YZ Tian, HR Lin, HJ Yang, XG Dong, YH Wang, ZF Zhang
Materials Science and Engineering: A 712, 603-607, 2018
2602018
General relation between tensile strength and fatigue strength of metallic materials
JC Pang, SX Li, ZG Wang, ZF Zhang
Materials Science and Engineering: A 564, 331-341, 2013
2602013
Grain boundary effects on cyclic deformation and fatigue damage
ZF Zhang, ZG Wang
Progress in Materials Science 53 (7), 1025-1099, 2008
2092008
Morphologies, orientation relationships and evolution of Cu6Sn5 grains formed between molten Sn and Cu single crystals
HF Zou, HJ Yang, ZF Zhang
Acta Materialia 56 (11), 2649-2662, 2008
2082008
Dependence of intergranular fatigue cracking on the interactions of persistent slip bands with grain boundaries
ZF Zhang, ZG Wang
Acta Materialia 51 (2), 347-364, 2003
1962003
Simultaneous improvement of strength and plasticity: Additional work-hardening from gradient microstructure
CW Shao, P Zhang, YK Zhu, ZJ Zhang, YZ Tian, ZF Zhang
Acta Materialia 145, 413-428, 2018
1862018
Low-cycle and extremely-low-cycle fatigue behaviors of high-Mn austenitic TRIP/TWIP alloys: Property evaluation, damage mechanisms and life prediction
CW Shao, P Zhang, R Liu, ZJ Zhang, JC Pang, ZF Zhang
Acta Materialia 103, 781-795, 2016
1862016
Effect of aspect ratio on the compressive deformation and fracture behaviour of Zr-based bulk metallic glass
ZF Zhang, H Zhang, XF Pan, J Das, J Eckert
Philosophical Magazine Letters 85 (10), 513-521, 2005
1852005
В данный момент система не может выполнить эту операцию. Повторите попытку позднее.
Статьи 1–20