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1¡¢Y. Chen, C.W. Xiao, S. Zhu*, Z.W. Li, W.X. Yang, F. Zhao, S.F. Yu, Y.S. Shi, Microstructure characterization and mechanical properties of crack-free Al-Cu-Mg-Y alloy fabricated by laser powder bed, Additive Manufacturing, 58 (2022) 103006.
2¡¢S. Zhu, S.Q. Song, Y. Chen*, F. Zhao, W.X. Yang, Z.W. Li, Y.S. Shi, S.F. Yu, Effect of in-situ Al2O3 on tensile strength and ductility of AlSi10Mg alloy fabricated by selective laser melting, Materials Letters, 308 (2022) 131108.
3¡¢Y. Chen, S.Q. Song, S. Zhu*, X.S. Cui, F. Zhao, Selective laser remelting of in-situ Al2O3 partilces reinforced AlSi10Mg matrix composite: Densification, microstructure and microhardness, Vacuum, 191 (2021) 110365.
4¡¢S. Zhu, Z.H. Li*, L.Z. Yan, X.W. Li, S.H. Huang, H.W. Yan, Y.A. Zhang, B.Q. Xiong, Natural aging behavior in pre-aged Al-Mg-Si-Cu alloys with and without Zn addition, Journal of Alloys and Compounds, 773 (2019) 496-502.
5¡¢S. Zhu, Z.H. Li*, L.Z. Yan, X.W. Li, S.H. Huang, H.W. Yan, Y.A. Zhang, B.Q. Xiong, Effects of Zn addition on the age hardening behavior and precipitation evolution of an Al-Mg-Si-Cu alloy, Materials Characterization, 145 (2018) 258-267.
6¡¢S. Zhu, Z.H. Li*, L.Z. Yan, X.W. Li, S.H. Huang, H.W. Yan, Y.A. Zhang, B.Q. Xiong, The effect of Zn on two step aging of Al-Mg-Si-Cu alloy. Materials Science and Technology, 35 (2019) 1291-1300.
7¡¢S. Zhu, Z.H. Li*, L.Z. Yan, X.W. Li, S.H. Huang, H.W. Yan, Y.A. Zhang, B.Q. Xiong, Effect of Zn addition on clustering behavior in a pre-aged Al-Mg-Si-Cu alloy and its relation to bake hardening response, Rare Metal Materials and Engineering, 48 (2019) 3500-3505.
8¡¢S. Zhu, Z.H. Li*, L.Z. Yan, X.W. Li, S.H. Huang, H.W. Yan, Y.A. Zhang, B.Q. Xiong, Effects of Zn addition on the natural ageing behavior and bake hardening response of a pre-aged Al-Mg-Si-Cu alloy, Acta Metallurgical Sinica, 55 (2019) 1395-1406.
9¡¢S. Zhu, Z.H. Li*, L.Z. Yan, X.W. Li, S.H. Huang, H.W. Yan, Y.A. Zhang, B.Q. Xiong, Transformation behavior of precipitates during artificial aging at 170¡ãC in Al-Mg-Si-Cu alloys with and without Zn addition, Rare Metals, 40 (2021) 1907-1914.
10¡¢S. Zhu, M. Yang, X.L. Song, Z. Zhang, L.B. Wang, S. Tang, Z.D. Xiang*, A few observations on Laves precipitation in relaion to its effect on cree rupture strength of ferritic steels based on Fe-9Cr (wt%) alloys at 650¡æ, Materials Science and Engineering A, 619 (2014) 47-56.11¡¢S. Zhu, M. Yang, X.L. Song, S. Tang, Z.D. Xiang*, Characterisation of Laves phase precipitation and its correlation to creep rupture strength of ferritic steels, Materials Characterization, 98 (2014) 60-65.
11¡¢Y. Chen, W.X. Yang, S. Zhu*, Y.S. Shi, Microstructural, mechanical and in vitro biological properties of Ti6Al4V-5Cu alloy fabricated by selective laser melting, Materials Characterization, 200 (2023) 112858.
12¡¢ÖìÉÏ, ÀîÖ¾»Ô, ãÆÀöÕä. ԤʱЧ¶ÔÆû³µÓÃÐÂÐÍAl-Mg-Si-Cu-ZnºÏ½ðºæ¿¾Ó²»¯ÐÔµÄÓ°Ïì. Ï¡ÓнðÊô, 2022, 46(03): 281-288.
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