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    朱上

    发布时间:2024-03-01  发布者: 点击阅读数:

    姓名:朱上

    邮箱:23051107@wit.edu.cn

    地址:武汉工程大学机电学院212

    个人基本情况

    朱上,讲师,20196月于北京有色金属研究总院材料科学与工程专业获得博士学位,20197月至20234月于华中科技大学开展博士后工作20235月起在武汉工程大学任教。本人多年来一直从事金属材料组织性能调控以及增材制造(也称3D打印)的研究,主持国家自然科学基金青年项目及中国博士后科学基金面上资助,参与多项国家自然科学基金项目及国家重大专项,已发表十余篇论文,其中以第一作者或唯一通讯作者发表中科院2区以上SCI论文8篇。欢迎更多勤奋踏实,基础扎实,有志于增材制造方向的本科生和研究生加入本团队(每年招收2-3名研究生,本科生若干人)。

    研究方向

    金属材料及其复杂结构激光与电弧增材制造/3D打印

    开设课程

    3D打印技术》、《材料成型质量检测》

    科研项目

    1Al2O3陶瓷颗粒增强铝基梯度复合材料的激光/电弧交互增材制造及其组织性能调控,2021.01-2023.12,国家自然科学基金青年项目,主持。

    2Al2O3陶瓷颗粒增强铝基梯度复合材料的激光/电弧复合增材制造及其组织性能调控,2020.07-2022.06,中国博士后科学基金面上资助,主持。

    3、金属基材料-结构双梯度点阵构件增材制造,2018.01-2022.12,国家自然基金重大项目课题,参与。

    4、高性能铝合金大规格板带材制造与应用技术,2016.09-2021.08,国家重点研发计划重点项目,参与。

    代表性科研成果(论文与专利)

    1Y. 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.

    2S. 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.

    3Y. 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.

    4S. 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.

    5S. 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.

    6S. 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.

    7S. 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.

    8S. 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.

    9S. 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°C in Al-Mg-Si-Cu alloys with and without Zn addition, Rare Metals, 40 (2021) 1907-1914.

    10S. 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℃, Materials Science and Engineering A, 619 (2014) 47-56.11S. 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.

    11Y. 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朱上, 李志辉, 闫丽珍. 预时效对汽车用新型Al-Mg-Si-Cu-Zn合金烘烤硬化性的影响. 稀有金属, 2022, 46(03): 281-288.

    13陈颖, 宋世前, 朱上, 史玉升, 余圣甫, 吴甲民, 原位自生纳米Al2O3增强铝基复合材料的激光增材制造方法, ZL202011047107.3.

    14、陈颖, 肖创维, 朱上, 李志文, 余圣甫, 史玉升, 消除激光选区熔化增材制造2024铝合金微裂纹的方法, CN202111269111.9.

    15、陈颖, 邵志斌, 朱上, 肖创维, 余圣甫. 电弧增材制造金属材料层间微合金化方法, ZL202311379216.9,

     

     

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