姓名: 肖云绵 博士、讲师
研究领域:金属增材制造装备与工艺开发、激光原位合成技术等
办公地点:创新大楼719
电子邮箱: ymxiao@gzhu.edu.cn
个人简介:
肖云绵,男,2023年博士毕业于华南理工大学机械工程专业。研究方向主要包括增材制造(3D打印)装备与工艺开发、激光原位合成、高性能钛材料研发与组织性能调控等。发表SCI/EI研究论文18篇,其中以第一作者在制造领域顶级期刊International Journal of Machine Tools & Manufacture、International Journal of Extreme Manufacturing、Composites Part B-Engineering等发表SCI论文5篇;申请国家发明专利8项,获授权2项(1项已转化);省科技成果2项;参与多个国家自然科学联合基金重点项目及面上项目、广东省重点领域研发计划等项目。中国机械工程学会会员,担任Journal of Materials Research and Technology, Materials Research Express等SCI期刊审稿人。
教育背景:
◆2017-2023 华南理工大学 机械工程 博士
◆2013-2017 西北农林科技大学 机械电子工程 学士
职业经历:
◆2024-至今 广州大学 机械与电气工程学院 讲师
教授课程:
无
科研服务:
1、近年参与的主要科研项目
[1] 国家自然科学基金-广东联合基金重点项目:多能量场复合增材制造机理基础研究(项目编号:U2001218),项目周期:2020.01-2024.12,在研;参与,主要成员。
[2] 广东省重点领域研发计划:4D打印专用材料与变体结构智能打印调控技术(项目编号:2020B090923001),项目周期:2020.01-2022.12,结题;参与,主要研究人员。
[3] 广东省重点领域研发计划:高性能等离子弧/激光增减材复合制造装备(项目编号:2018B090905001),项目周期:2019.01-2021.12,结题;参与,主要研究人员。
[4] 国家工程技术研究中心开放基金项目:异种金属激光选区熔化的成形机理研究与工艺优化(项目编号:2019005),项目周期:2020.01-2021.12,结题;参与,主要成员。
研究成果:
(1)代表性论文
[1]Y. Xiao, Y. Yang, D. Wang, H. Zhou, Z. Liu, L. Liu, S. Wu, C. Song*. In-situ synthesis of spatial heterostructure Ti composites by laser powder bed fusion to overcome the strength and plasticity trade-off, International Journal of Machine Tools and Manufacture, 2024,196:104117. (中科院一区Top, JCR Q1, IF:14.0)
[2]Y. Xiao, C. Song*, Z. Liu, L. Liu, H. Zhou, D. Wang, Y. Yang. In-situ additive manufacturing of high strength yet ductility titanium composites with gradient layered structure using N2, International Journal of Extreme Manufacturing, 2024, 6(3):035001. (中科院一区, JCR Q1, IF:16.1)
[3]Y. Xiao, Y. Yang, D. Wang, L. Liu, Z. Liu, S. Wu, H. Zhou, Z. Liu, C. Song*. In-situ synthesis of high strength and toughness TiN/Ti6Al4V sandwich composites by laser powder bed fusion under a nitrogen-containing atmosphere. Composites Part B: Engineering, 2023, 253: 110534. (中科院一区Top, JCR Q1, IF:13.1)
[4]Y. Xiao, Y. Yang, M. Zhang, Z. Liu, H. Zhou, S. Wu, D. Wang, C. Song*. High wear resistance of uniform nitriding titanium composites fabricated by in-situ laser powder bed fusion. Composites Part A: Applied Science and Manufacturing, 2024, 177: 107950. (中科院二区Top, JCR Q1, IF:8.7)
[5]Y. Xiao, Y. Yang, S. Wu, J. Chen, D. Wang, C. Song *. Microstructure and mechanical properties of AlSi10Mg alloy manufactured by laser powder bed fusion under nitrogen and argon atmosphere. Acta Metallurgica Sinica (English Letters), 2022, 35(3): 486-500. (中科院二区, JCR Q1,IF:3.5)
[6]Z Liu, Y Yang, Y Xiao, H Lei, C Yang, Z Liu, Q Zhao, C Song. Investigation of 316L microstructure evolution mechanism and mechanical properties in dual-laser powder bed fusion with controllable remelting time interval[J]. Materials & Design. 2024, 239:112761. (SCI, JCR Q1)
[7]Z. Liu, C. Song*, X. Han, Y. Xiao, K. Liu, Y Yang. Effect of dual-laser powder bed fusion on surface quality, internal defects and properties of 316L stainless steel. Journal of Materials Research and Technology, 2023, 27: 5681-5691. (SCI, JCR Q1)
[8]Z. Yan, Vyacheslav Trofimov, C. Song*, Y. Xiao, L. Liu, J. Huang, Y. Yang. Research on microstructure and properties enhancement of TiN/GH5188 Co-superalloy composite fabricated by laser powder bed fusion. Materials Science and Engineering: A, 2024, 913: 147090. (SCI, JCR Q1)
[9]C. Song, Z. Hu, Y. Xiao, Y. Li, Y. Yang. Study on Interfacial Bonding Properties of NiTi/CuSn10 Dissimilar Materials by Selective Laser Melting. Micromachines, 2022, 13(4): 494. (SCI, JCR Q2)
[10]S. Wu, Y. Yang, Y. Huang, C. Han, J. Chen, Y. Xiao, Y. Li, D. Wang. Study on powder particle behavior in powder spreading with discrete element method and its critical implications for binder jetting additive manufacturing processes. Virtual and Physical Prototyping, 2023, 18:1. (中科院一区SCI, JCR Q1)
[11]韦雄棉,王迪,杨永强,韩昌骏,陈杰,肖云绵,周鑫,王兴隆,邓澄,王英俊.激光选区熔化钛合金多孔结构拉伸性能研究.中国激光, 2021, 48(18): 1802016. (EI)
[12]Tai ZH; Trofimov V; Wang D; Xiao YM; Lv, JF; Yang YQ. Comparative study about the properties of in-situ synthesized TiN/Ti6Al4V sandwich structure materials by selective laser melting and laser directed energy deposition. Conference on 3D Printed Optics and Additive Photonic Manufacturing IV, 2024, Strasbourg, France. (Proceedings)
(2)专利
[1] 杨永强;肖云绵;刘林青;陈杰;宋长辉 一种基于气氛SLM原位合成数字化材料的装置,2021.09.21,中国,ZL202022817532.8
[2] 杨永强;黄坤;韩昌骏;蒋梦龙;肖云绵;黄金淼 一种陶瓷/钢结硬质合金梯度材料的制备方法,2024.07.26,中国,ZL202210943916.5
[3] 宋长辉;刘林青;肖云绵;杨永强;张滨 一种原位处理4D打印构件的方法,2022.12.23,中国,ZL202011369768.8
[4] 杨永强;刘林青;肖云绵;宋长辉;王迪;张滨 一种钛镍形状记忆合金的4D打印装置,2021.10.08,中国,ZL202023131365.8