教师名录

苏益士

副研究员
所属二级机构:复合材料研究所
硕导/博导:博导
通讯地址:上海市闵行区东川路800号材料D楼320室
电子邮箱:suyishi@sjtu.edu.cn
办公电话:021-34202524
教育经历
  • 2002-09 ~ 2006-06    天津大学     工程力学  本科
  • 2006-09 ~ 2008-06    天津大学     固体力学  硕士
  • 2008-10 ~ 2011-12    法国特鲁瓦技术大学     材料学  博士
工作经历
  • 2012-03 ~ 2014-10    上海交通大学,材料科学与工程学院  博士后
  • 2014-11 ~ 2021-12    上海交通大学,材料科学与工程学院  讲师
  • 2022-01 ~ 至今    上海交通大学,材料科学与工程学院  副研究员
研究方向
  • 金属基复合材料构型复合化
  • 多尺度模拟与材料信息学
研究情况

长期从事金属基复合材料构型复合化、多尺度模拟与材料信息学研究,在本领域内率先提出了“基于形貌统计→重构复合组织→界面定量表征→变形失效机制”的复合材料建模拟实学术思想;开展了微/纳米颗粒协同增强金属基复合材料的构型复合化研究,构筑了金属基复合材料的建模拟实研究平台、材料数据库与机器学习,加速了金属基复合材料宏量制备与应用产品研制。已发表研究论文90余篇,被SCI他引3200余次,H因子32。主持国家自然科学基金面上、青年项目、基础加强子任务等7项,参与国家自然科学基金重大项目、重点研发计划、国家973计划、装备预先研究等项目12项。

学术/社会兼职
  • 中国复合材料学会会员  
  • 有色金属智库认证会员  
  • 维泽材料科学专家委员会成员  
  • AEIC学术交流资讯中心组委会成员  
荣誉信息
  • 上海交通大学优异学士论文指导教师
  • 上海交通大学十佳大创优秀指导教师
论文信息
  • A.D. Hua, Y.S. Su *, Y.P. Cai, X.Z. Wang, K. Liu, H. Cao, D. Zhang, Q.B. Ouyang*. Fabrication, microstructure characterization and mechanical properties of B4C microparticles and SiC nanowires hybrid reinforced aluminum matrix composites. Materials Characterization, 2022, 193: 112243. Doi: 10.1016/j.matchar.2022.112243
  • C.N. Zhu, X.Z. Wang, Q.F. Cui, S.J. Gu, K. Liu, Y.P. Cai, Y.S. Su*, D. Zhang, Q.B. Ouyang*. Effect of reinforcement volume fraction and T6 heat treatment on microstructure, thermal and mechanical properties of mesophase pitch-based carbon fiber reinforced aluminum matrix composites. Materials Science and Engineering: A, 2022, 834: 142469. Doi: 10.1016/j.msea. 2021.142469
  • C.H. Qiu, Y.S. Su*, J.Y. Yang, B.Y. Chen, L.T. Kong, Q.B Ouyang, D. Zhang*. First-principles investigation of the interfacial stability, precipitate formation, and mechanical behavior of Al3Li/Al3Zr/Al interfaces. Metallurgical and Materials Transactions A, 2022, 53: 1308–1321. Doi: 10.1007/s11661-022-06591-8
  • C.H. Qiu, Y.S. Su*, J.Y. Yang, X.S. Wang, B.Y. Chen, Q.B Ouyang, D. Zhang*. Microstructural characteristics and mechanical behavior of SiC(CNT)/Al multiphase interfacial micro-zones via molecular dynamics simulations. Composites Part B: Engineering, 2021, 220: 108996. Doi: 10.1016/j.compositesb.2021.108996
  • X.Z. Wang, Y.S. Su*, Q.B. Ouyang*, D. Zhang. Synergistic effects of tungsten coating on the microstructure, thermophysical and mechanical properties of graphite flakes reinforced copper matrix composites. Journal of Alloys and Compounds, 2022, 916: 165318. Doi: 10.1016/j.jall com.2022.165318
  • X.Z. Wang, Y.S. Su*, X.S. Wang, K. Liu, L.T. Zhang, Q.B. Ouyang*, D. Zhang. Fabrication, mechanical and thermal properties of tungsten-copper coated graphite flakes reinforced copper matrix composites. Materials & Design, 2022, 216: 110526. Doi: 10.1016/j.matdes.2022. 110526
  • X.Z. Wang, Y.S. Su*, Q.B Ouyang*, C.N. Zhu, H. Cao, D. Zhang. Fabrication, mechanical and thermal properties of copper coated graphite films reinforced copper matrix laminated composites via ultrasonic-assisted electroless plating and vacuum hot-pressing sintering. Materials Science and Engineering: A, 2021, 824: 141768. Doi: 10.1016/j.msea.2021.141768
  • X.S. Wang, Y.S. Su*, C.H. Qiu, C.N. Zhu, X.Z. Wang, H. Cao, D. Zhang, Q.B. Ouyang*. Mechanical behavior and interfacial micro-zones of SiCp(CNT) hybrid reinforced aluminum matrix composites. Materials Characterization, 2022, 189: 111982. Doi: 10.1016/j.mat char.2022.111982
  • C.Y. Wang, Y.S. Su*, Q.B. Ouyang*, D. Zhang. Effects of graphite flake size on the properties of aligned graphene nanoplatelets covered graphite flakes/aluminum composites. Diamond and Related Materials, 2021, 116: 108381. Doi: 10.1016/j.diamond.2021.108381
  • C.Y. Wang, Y.S. Su*, Q.B. Ouyang*, D. Zhang. Enhanced mechanical behavior and fabrication of graphite flakes covered by aligned graphene nanoplatelets reinforced 2A12 aluminum composites. Vacuum, 2021, 188: 110150. Doi: 10.1016/j.vacuum.2021.110150
  • H. Cao, Y.S. Su*, D. Zhang, Q.B. Ouyang*. Fabrication, mechanical and thermal behaviors of antiperovskite manganese nitride Mn3.1Zn0.5Sn0.4N reinforced aluminum matrix composites. Composites Part B: Engineering, 2021, 223: 109080. Doi: 10.1016/j.compositesb.2021.109080
  • C.N. Zhu, Y.S. Su*, X.S. Wang, H.C. Sun, Q.B. Ouyang*, D. Zhang. Process optimization, microstructure characterization and thermal properties of mesophase pitch-based carbon fiber reinforced aluminum matrix composites fabricated by vacuum hot pressing. Composites Part B: Engineering, 2021, 215: 108746. Doi: 10.1016/j.compositesb.2021.108746
  • G. Wang, H. Ouyang, Y.S. Su, Q. Guo, D.B. Xiong, Q.D. Zhuang, Z.M. Yue, Z. Li*, D. Zhang*. Heterostructured bulk aluminum with controllable gradient structure: Fabrication strategy and deformation mechanisms. Scripta Materialia, 2021, 196: 113762. Doi: 10.1016/j.scriptamat. 2021.113762
  • C.H. Qiu, Y.S. Su*, J.Y. Yang, B.Y. Chen, Q.B. Ouyang, D. Zhang*. Structural modelling and mechanical behaviors of graphene/carbon nanotubes reinforced metal matrix composites via atomic-scale simulations: A review. Composites Part C: Open Access, 2021, 4: 100120. Doi: 10.1016/j.jcomc.2021.100120
  • Q. Qiao, Y.S. Su*, Z.Q. Li, Q.F. Cui, H. Yu, Q.B. Ouyang*, D. Zhang. Effect of overlapping region on double-sided friction stir welded joint of 120 mm ultra-thick SiCp/Al composite plates. Materials Science and Engineering A, 2020, 782: 139238. Doi: 10.1016/j.msea.2020. 139238
  • Q. Qiao, Y.S. Su*, H. Cao, D. Zhang, Q.B. Ouyang*. Effect of post-weld heat treatment on double-sided friction stir welded joint of 120 mm ultra-thick SiCp/Al composite plates. Materials Characterization, 2020, 169: 110668. Doi: 10.1016/j.matchar.2020.110668
  • C.Y. Wang, Y.S. Su*, Q.B. Ouyang*, D. Zhang. Enhanced through- plane thermal conductivity and mechanical properties of vertically aligned graphene nanoplatelet@graphite flakes reinforced aluminum composites. Diamond and Related Materials, 2020, 108: 107929. Doi: 10. 1016/j.diamond.2020.107929
  • C.N. Zhu, Y.S. Su*, D. Zhang, Q.B. Ouyang*. Effect of Al2O3 coating thickness on microstructural characterization and mechanical properties of continuous carbon fiber reinforced aluminum matrix composites. Materials Science and Engineering A, 2020, 793: 139839. Doi: 10.1016/j.msea.2020.139839
  • C.H. Qiu, Y.S. Su*, B.Y. Chen, J.Y. Yang, Z.Q. Li, Q.B Ouyang, Q. Guo, D.B. Xiong, D. Zhang*. First-principles investigation of interfacial stability, mechanical behavior and failure mechanism of β-SiC(1 1 1)/Al(1 1 1) interfaces. Computational Materials Science, 2020, 175: 109608. Doi: 10.1016/j.commatsci.2020.109608.
  • H. Cao, Y.S. Su*, D. Cui, D. Zhang, Q.B. Ouyang*. Microstructural characterization, mechanical properties and thermal expansion of antiperovskite manganese nitride Mn3.1Zn0.5Sn0.4N fabricated by combing vacuum sintering and spark-plasma sintering. Materials Characterization, 2020, 160: 110100. Doi: 10.1016/j.matchar.2019.110100
  • Q. Qiao, Y.S. Su*, Q.B. Ouyang*, D. Zhang, X.C. Song, L.J. Guo. Microstructural characterization and mechanical properties of 120-mm ultra-thick SiCp/Al composite plates joined by double-sided friction stir welding. Metallurgical and Materials Transactions A, 2019, 50: 3589-3602. Doi: 10.1007/s11661-019-05270-5
  • D. Li, C.Y. Wang, Y.S. Su*, D. Zhang, Q.B. Ouyang*. Governing the inclination angle of graphite flakes in the graphite flake/Al composites by controlling the Al particle size via flake powder metallurgy. Acta Metallurgica Sinica (English Letters), 2020, 33: 649-658. Doi: 10.1007/s40195-019-00994-0
  • 俞洋,苏益士*,Berthelot Yann,欧阳求保,郭强,张荻*. 颗粒增强金属基复合材料的结构建模与力学性能. 中国材料进展,2020,39:214-225. Doi: 10.7502/j.issn.1674-3962. 201811010
  • S.S. Li, Y.S. Su*, H.L. Jin, Y. Huang, Q.B. Ouyang*, D. Zhang. Effects of carbon nanotube content on morphology of SiCp(CNT) hybrid reinforcement and tensile mechanical properties of SiCp(CNT)/Al composites. Journal of Materials Research, 2017, 32: 1239-1247. Doi: 10.1557/jmr.2017.12
  • Y.S. Su, Z. Li, Y. Yu, L. Zhao, Z.Q. Li, Q. Guo, D.B. Xiong, D. Zhang*. Composite structural modeling and tensile mechanical behavior of graphene reinforced metal matrix composites. Science China Materials, 2018, 61:112-124. Doi: 10.1007/s40843-017-9142-2
  • Y. Huang, Y.S. Su, X.W. Guo, Q. Guo, Q.B. Ouyang*, G.D. Zhang, D. Zhang. Fabrication and thermal conductivity of copper coated graphite film/aluminum composites for effective thermal management. Journal of Alloys and Compounds, 2017, 711: 22-30. Doi: 10.1016/j.jallcom. 2017.03.233
  • Y.S. Su, Z.Q. Li, X.L. Gong, Q.B. Ouyang, Q. Guo, C.P. Guo, J. Zhang, D. Zhang*. Structural modeling and mechanical behavior of Metal-Porous-Polymer-Composites (MPPCs) with different polymer volume fractions. Composite Structures, 2016, 153: 673-681. Doi: 10.1016/j. compstruct.2016.06.024
  • S.S. Li, Y.S. Su, X.H. Zhu, H.L. Jin, Q.B. Ouyang*, D. Zhang*. Enhanced mechanical behavior and fabrication of silicon carbide particles covered by in-situ carbon nanotube reinforced 6061 aluminum matrix composites. Materials & Design, 2016, 107: 130-138. Doi: 10.1016/j.matdes. 2016.06.021
  • Y.S. Su*, D. Zhang*, X.L. Gong, M. Shen. Mechanical behavior in bending deformation of thermoplastic composite laminates with different stacking sequences. Journal of Composite Materials, 2016, 50(8): 1037-1048. Doi: 10.1177/0021998315586863
  • Y.S. Su, Z.Q. Li, L. Jiang, X.L. Gong, G.L. Fan, D. Zhang*. Computational structural modeling and mechanical behavior of carbon nanotube reinforced aluminum matrix composites. Materials Science and Engineering: A, 2014, 614: 273-283. Doi: 10.1016/j.msea.2014.07.048
  • S.S. Li, Y.S. Su, Q.B. Ouyang*, D. Zhang. In-situ carbon nanotube-covered silicon carbide particle reinforced aluminum matrix composites fabricated by powder metallurgy. Materials Letters, 2016, 167: 118-121. Doi: 10.1016/j.matlet.2015.12.155
  • Y. Huang, Y.S. Su, S.S. Li, Q.B. Ouyang*, G.D. Zhang, L.T. Zhang, D. Zhang. Fabrication of graphite film/aluminum composites by vacuum hot pressing: process optimization and thermal conductivity. Composites Part B: Engineering, 2016, 107: 43-50. Doi: 10.1016/j.compositesb. 2016.09.051
  • Y.S. Su, Q.B. Ouyang, W.L. Zhang, Z.Q. Li, Q. Guo, G.L. Fan, D. Zhang*. Composite structure modeling and mechanical behavior of particle reinforced metal matrix composites. Materials Science and Engineering A, 2014, 594: 324-329. Doi: 10.1016/j.msea.2014.01.024