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Sheng Li
Sheng Li
Postdoctor, SIAT, Chinese Academy of Sciences
在 siat.ac.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Leaching behavior of impurities in metallurgical grade silicon subjected to electromagnetic strengthening
S Li, X Deng, C Zhang, J Wen, J Wu, K Wei, W Ma
Journal of Alloys and Compounds 831, 154888, 2020
152020
Effect of electromagnetic strengthening on microstructure of precipitates in metallurgical grade silicon
S Li, X Deng, K Wei, W Ma, J Wu
Journal of Alloys and Compounds 816, 152507, 2020
142020
Mechanism of enhancing phosphorus removal from metallurgical grade silicon by Si-Fe-Ti phase reconstruction
X Deng, S Li, J Wen, K Wei, M Zhang, X Yang, W Ma
Metallurgical and Materials Transactions B 52, 625-632, 2021
132021
Microstructure evolution of precipitates during solidification in metallurgical grade silicon
S Li, X Deng, J Wen, K Wei, W Ma
Intermetallics 128, 106987, 2021
72021
Effects of solidification rate on the leaching behavior of metallic impurities in metallurgical grade silicon
L Zhou, S Li, Q Tang, X Deng, K Wei, W Ma
Journal of Alloys and Compounds 882, 160570, 2021
62021
Combining the K-bubble strengthening and Y-doping: Microstructure, mechanical/thermal properties, and thermal shock behavior of WKY alloys
L Chen, S Li, W Qiu, B Huang, Y Lian, X Liu, J Tang
International Journal of Refractory Metals and Hard Materials 103, 105739, 2022
52022
Effect of heat-treatment on the microstructure of precipitates in metallurgical grade silicon
S Li, X Long, L Chen, W Qiu
Journal of Materials Research and Technology 22, 1911-1923, 2023
32023
Performance and evolution of W/steel joint fabricated by selective laser melting
S Li, L Chen, W Qiu, P Wen, Y Tan, C Wu, T Zhao, J Du, J Tang
Science and Technology of Welding and Joining 27 (8), 638-646, 2022
32022
Microstructure and mechanical properties comparison of ferritic/martensitic steel fabricated by wrought and selective laser melting
S Li, W Qiu, T Zhao, A Li, Y Tan, P Wen, C Wu, J Du, J Tang
Materials Letters 335, 133844, 2023
22023
Irradiation hardening of WK-based PFM exposed to 14 MeV protons
P Wen, X Hu, C Fan, Y Tan, W Qiu, T Zhao, S Li, C Wu, J Du, J Tang
Fusion Engineering and Design 187, 113379, 2023
22023
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