师资队伍
伍诗伟
基本信息
性别:男 最高学位:工学博士 博导/硕导:硕导
个人简介
博士,项目研究员,硕士研究生导师。2019年博士毕业于上海大学材料科学与工程学院,获工学博士学位,导师是国家杰青、先进核电材料全国重点实验室常务副主任王刚教授,其间曾在香港城市大学材料科学与工程系联合培养,导师是美国工程院院士刘锦川教授。博士毕业后在香港城市大学、新加坡国立大学从事博士后研究工作,合作导师分别是美国工程院院士刘锦川教授、新加坡国立大学机械工程系闫文韬副教授。2025年2月加入中国科学院重庆绿色智能技术研究院,主要研究领域是先进结构材料与金属增材制造。主持中科院人才引进计划青年项目(备案)、重庆市新重庆引才计划项目;作为研究骨干深度参与了多项国家级、省市级及国际合作科研项目,包括国家自然科学基金委重点研发计划、中德联合基金、以及香港研究资助局和新加坡教育部等资助项目。发表SCI学术论文40篇,其中以第一作者/通讯作者发表中科院大一区论文8篇(含结构材料领域TOP期刊《Acta Materialia》2篇),Google学术累计他引2000余次,单篇最高490余次,h因子21。荣获ESI高被引论文、中科院大一区期刊《Materials Research Letters》与《Journal of Materials & Technology》优秀论文奖、《Advanced Functional Materials》封面论文以及《Acta Materialia》“过去90天下载次数最多论文”等奖励。受邀在“The Mineral, Metals & Materials Society“等国际会议做邀请报告2次、在国内材料大会等做邀请报告2次。担任SCI期刊《Tungsten》(中科院二区、JCR一区,IF=11.2)青年编委、Materials(中科院三区、JCR二区期刊)客座编辑,并受邀担任多个材料、工程、光学和表面领域SCI顶刊的同行审稿人,包括《Acta Materialia》、《International Journal of Machine Tools and Manufacture》、《Additive Manufacturing》、《Journal of Materials Science & Technology》、《Surface & Coatings Technology》等。
教育经历
2015/09-2019/07,上海大学,材料科学与工程学院/材料学,工学博士
2009/09-2013/07,黑龙江科技大学,材料科学与工程学院/材料成型,工学学士
主要研究方向
高熵合金、耐高温合金、金属增材制造、异构材料的设计与强韧化
招生专业
材料科学与工程、材料与化工
主要代表性科研成果
近五年主持/参与项目:
1.中科院BR-B引才计划项目(备案),250万元,主持
2.重庆市新重庆引才计划项目,120万元,主持
3.山东省重点研发计划(科技合作),轻质耐热钛基复合材料高精密增材制造与应用,2024/01-2026/12,50万元,在研,研究骨干
4.新加坡教育部Tier 2项目,Data-driven multi-scale modelling of thermal stress in additive manufacturing,2022/06-2025/05,420余万元,结题,参与
5.香港杰出青年学者计划项目,Grain-boundary toughening mechanisms and thermal resistance of novel nanoparticles-strengthened high-entropy alloys with hetero-lamellar grain structures at intermediate temperatures,2021/08-2024/07,120余万元,结题,参与
6.新加坡教育部Tier 2项目,Understand and mitigate hot cracking in metal additive manufacturing,2021/03-2024/02,360余万元,结题,参与
代表性论文(*通讯作者):
1.S.W. Wu, G. Wang, Q. Wang, Y.D. Jia, Y.D. Jia, J. Yi, Q.J. Zhai, J.B. Liu, B.A. Sun, H.J. Chu, J. Shen, P.K. Liaw, C.T. Liu, T.Y. Zhang. Enhancement of strength-ductility trade-off in a high-entropy alloy through a heterogeneous structure. Acta Materialia, 2019, 165: 444-458. (ESI Top 1% Highly Cited)
2.Shiwei Wu, Hou Yi Chia, Tianlong Zhang, Yuefei Jia, Yongkun Mu, Qing Zhang, Yung Zhen Lek, Daijun Hu, Lei Fan, Wentao Yan. A precipitation strengthened high entropy alloy with high (Al+Ti) content for laser powder bed fusion: Synergizing intrinsic hot cracking resistance and ultrahigh strength, Acta Materialia, 2023, 258: 119193. (Most Downloaded in the Latest 90 Days)
3.Yuefei Jia, Gengchen Li, Hongming Yang, Xiaochang Xie, Ping Yang, Long Xu, Zhibin Wu, Yongkun Mu, Kang Sun, Shiwei Wu*, Xilei Bian, Yandong Jia*, Gang Wang. Achieving ambient superformability in a lightweight refractory medium-entropy alloy via stagewise adaptive microstructural buffers. Journal of Materials Science & Technology, 2025 (Accept)
4.J.X. Zhu, Shiwei Wu*, C. Ren, Yuefei Jia*, B.X. Cao, J.L. Ren, T. Yang, P.K. Liaw, G. Wang*. Quad-heterostructure lamellar precipitation-strengthened high-entropy alloy overcomes strength-ductility trade-off from cryogenic to intermediate temperatures. Materials Research Letters, 2025, 13(4): 1-9.
5.Long Xu, Hui Chen, Yuefei Jia, Dongpeng Wang, Shiwei Wu*, Yandong Jia, Gang Wang, Zixu Guo*, Yilun Xu*. Revealing effects of creep damage on high-temperature fatigue behavior for HfNbTiZr refractory high-entropy alloys: Experimental investigation and crystal-plasticity modelling, Journal of Materials Science & Technology, 2025, 231: 134-150.
6.S.W. Wu, T Yang, B.X. Cao, J.H. Luan, Y.F. Jia, L Xu, Y.K. Mu, T.L. Zhang, H.J. Kong, X. Tong, J.C. Peng, G. Wang, Q.J. Zhai, J. Lu, C.T. Liu. Multicomponent Ni-rich high-entropy alloy toughened with irregular-shaped precipitates and serrated grain boundaries. Scripta Materialia, 2021, 204: 114066.
7.S.W. Wu, L. Xu, X.D. Ma, Y.F. Jia, Y.K. Mu, Y.D. Jia, G. Wang, C.T. Liu. Effect of annealing temperatures on microstructure and deformation behavior of Al0.1CrFeCoNi high-entropy alloy. Materials Science and Engineering A, 2021, 805: 140523.
8.S.W. Wu, G. Wang, J. Yi, Y.D. Jia, I. Hussain, Q.J. Zhai, P.K. Liaw. Strong grain-size effect on deformation twinning of an Al0.1CoCrFeNi high-entropy alloy. Materials Research Letters, 2017, 5(4): 276-283. (2013-2023 Outstanding Paper Award)
9.Lin He, Shiwei Wu, Anping Dong, Haibin Tang, Dafan Du, Guoliang Zhu, Baode Sun, Wentao Yan. Selective laser melting of dense and crack-free AlCoCrFeNi2.1 eutectic high entropy alloy: Synergizing strength and ductility. Journal of Materials Science & Technology, 2022, 117: 133-145. (2022-2024 Outstanding Paper Award)
10.Lu Wang, Zixu Guo, Guochen Peng, Shiwei Wu, Yanming Zhang, and Wentao Yan. Evaporation-Induced Composition Evolution in Metal Additive Manufacturing. Advanced Functional Materials, 2024, 35(7), 2412071. (Cover Paper)
11.Yanming Zhang, Shiwei Wu, Zixu Guo, Guochen Peng, Lu Wang, Wentao Yan. Defects caused by powder spattering and entrainment in laser powder bed fusion process: High-fidelity modeling of gas, melt pool and powder dynamics. Acta Materialia, 2025, 288: 120816.
12.B.X. Cao, W.-W. Xu, C.Y. Yu, S.W. Wu, H.J. Kong, Z.Y. Ding, T.L. Zhang, J.H. Luan, B. Xiao, Z.B. Jiao, Y. Liu, T. Yang, C.T. Liu. L12-strengthened multicomponent Co-Al-Nb-based alloys with high strength and matrix-confined stacking-fault-mediated plasticity. Acta Materialia, 2022, 229: 117763.
13.Yuefei Jia, Shiwei Wu, Yongkun Mu, Long Xu, Chang Ren, Kang Sun, Jun Yi, Yandong Jia, Wentao Yan, Gang Wang. Efficient Coarse-Grained Superplasticity of a Gigapascal Lightweight Refractory Medium Entropy Alloy. Advanced Science, 2023, 10(12), 2207535.
14.Zhouyang He, Xingbao Qiu, Xilei Bian, Shiwei Wu, Xiaolong Yu, Chenwei Liu, Zhen Hu, Yuefei Jia, Weisen Zheng, Jinqiang Shi, Zhibin Wu, Xiaogang Lu, Yandong Jia, Gang Wang. Laser directed energy deposited eutectic high entropy alloy with tailored lamella structure via interlayer pause strategy. Additive Manufacturing, 2024, 94, 104471.
15.Long Xu, Yandong Jia, Shiwei Wu, Yuefei Jia, Kaikai Song, Gang Wang. Multiscale crack deflection overcomes intermediate-temperature brittleness via hierarchical fiber-like structure in a dual nanoprecipitation-strengthened high-entropy alloy fabricated by selective laser melting. Scripta Materialia, 2023, 225: 115189.
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