Zhang, Zhongwu
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1

Achieving ultrahigh strength and ductility via high-density..:

Liu, Liyuan ; Zhang, Yang ; Zhang, Zhongwu
Journal of Materials Science & Technology.  205 (2025)  - p. 27-41 , 2025
 
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3

Enhancing strength–ductility synergy in high-Mn steel by tu..:

Cheng, Hao ; Sun, Lixin ; Li, Wentao...
Journal of Materials Science & Technology.  187 (2024)  - p. 240-247 , 2024
 
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4

Nanoprecipitate and stacking fault-induced high strength an..:

Liu, Liyuan ; Zhang, Yang ; Zhang, Zhongwu...
International Journal of Plasticity.  172 (2024)  - p. 103853 , 2024
 
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5

Refractory high-entropy alloys with ultra-high strength and..:

Ma, Yaxi ; Zhang, Yang ; Sun, Lixin.
Journal of Materials Science & Technology.  192 (2024)  - p. 215-227 , 2024
 
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6

Corrosion behavior of Zr35Ti30Nb20Al10Ta5 refractory high e..:

Zhang, Hongbo ; Fan, Mingyu ; Zhang, Yang...
Materials Today Communications.  40 (2024)  - p. 109392 , 2024
 
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7

Effect of grain orientation and precipitates on the superel..:

Du, Kang ; Zhang, Yang ; Zhao, Guangda...
Materials Science and Engineering: A.  890 (2024)  - p. 145858 , 2024
 
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12

Effect of Ti content on abnormal grain growth of Fe–Mn–Al–N..:

Wang, Qinghao ; Cui, Ye ; Li, Xinghao...
Smart Materials and Structures.  33 (2024)  6 - p. 065017 , 2024
 
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13

Effects of Ni addition on abnormal grain growth in superela..:

Li, Xinghao ; Cui, Ye ; Zhang, Chunyi..
Materials Science and Engineering: A.  891 (2024)  - p. 145973 , 2024
 
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15

Improving the tensile ductility of the high-strength nanotw..:

Li, Wentao ; Sun, Lixin ; Cheng, Hao..
Materials Science and Engineering: A.  902 (2024)  - p. 146626 , 2024
 
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