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赵睿 ZHAO Rui

作者:       发布: 2026-01-15      来源:

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个人简介

赵睿,助理教授,博士生导师,北航江西研究院科研副院长,国家级青年科技人才(中国科协“青托”),北京航空航天大学青年拔尖人才,江西省鹰潭市“鹰才计划”人选。主要研究方向为高超声速强预冷发动机高性能制造技术。包括连续介质力学框架下多相合金外场辅助激励塑性本构、复杂相变合金冶金断裂机理、微纳薄膜传感机理及分子动力学模拟等方面。发表了包括IJP(1),MD(3),MSEA(2)等高水平 SCI论文35 篇,编著/参编教材2部。主持国自然基金、国家部委基础科研/预研、国家级科技重点实验室基金等重大项目24项。国家发明专利授权22项。科研经费到款逾千万。2017年获得钎焊行业龙头公司WCC颁发的“国际钎焊工艺师”认证,2020年获得国家级奖励“全国创新争先奖”(12/15),2023年获中国产学研合作创新成果奖(5/10),2024年获国家部委科技进步三等奖(2/6),江西省科技进步一等奖(4/10),2025年获江西省首届高层次人才创新创业大赛二等奖(1/1)。获北航教学成果奖一等奖一项(5/15),二等奖一项(5/6)。担任《Mechanical Engineering Science》期刊青年编委,南昌市重点实验室(航空发动机预冷器先进制造技术)主任,江西省省级中试平台(精密成形与强预冷发动机技术)负责人。


基本信息

办公地点:北京市航空航天大学学院路飞行器制造工程系楼206室

电子邮件:rui_ht@126.com


教育背景

北京航空航天大学                              航空宇航制造                           博士                2012-2018

华中科技大学                                      材料成型及控制工程               学士                2008-2012


工作经历

北京航空航天大学江西研究院                                                             科研副院长    2024-至今

北京航空航天大学                              飞行器制造工程系副书记       助理教授        2020-至今

北京航空航天大学                              飞行器制造工程系                   博士后            2018-2020


研究方向

高超声速强预冷发动机高性能制造技术

1、连续介质力学框架下多相合金外场辅助激励塑性本构

2、复杂相变合金冶金断裂机理

3、微纳薄膜传感机理及分子动力学模拟


讲授课程

1、微纳传感与智能控制 (本科生课程)

2、加工工艺学                 (本科生课程)

3、机械工程引论             (本科生课程)

4、智能微纳导论             (本科生课程)


代表性科研项目

1、国家自然科学基金委,面上项目,2026-2029,主持

2、国家自然科学基金委,青年基金,2022-2024,主持

3、国家自然科学基金委,重点项目,2017-2021,参与

4、航空发动机气动热力国防科技重点实验室基金,2022-2023,主持

5、航空发动机气动热力国防科技重点实验室基金,2017-2019,主持

6、江西省重点研发计划,2023-2026,主持

7、江西省自然基金,青年基金,2021-2023,主持

8、工信部MJ科研项目,2017-2019,参与

9、JKW项目,2017-2018,参与

10、KGJ项目,2017-2019,参与


代表性学术论文(*为通讯作者)

1. Zhao R*, Diao X, Tian Z, Liu X, Wan M. A creep constitutive model for Inconel 718-BNi2 brazed joints incorporating the dynamic interplay between dislocations and γ’’ precipitate phases. Materials & Design(2025)  DOI:10.1016/j.matdes.2025.114170

2.Tian Z, Zhao R*, Diao X, Jiang S, Shan D, Wan M. A constitutive model optimizing superalloy performance- The interplay of annealing twins, dislocations, and grain boundaries. Journal of Materials Research and Technology(2025) DOI:10.1016/j.jmrt.2025.07.014

3.Zhu B, Wu X, Du F, Zhao R*, Wan M, Wang D, Chen L. Elevated temperature tensile behavior and microstructure evolution of Nb–5W–2Mo–1Zr alloy sheets. Journal of Materials Research and Technology,(2025) DOI:10.1016/j.jmrt.2025.06.106

4. Zhu B, Wu X, Du F, Wan M, Zhao R*, Hu X, Li J. Effect of cold rolling on the microstructure evolution of Nb-5W-2Mo-1Zr niobium alloy sheets. Materials Letters(2025) DOI:10.1016/j.matlet.2025.138017

5.iang S, Guo X, Zhao R*, Zhang D, Wan M. Damage simulation study of composite-to-mestal interference-fit wtih multiple structure parameters. Crystals(2025) DOI:10.3390/cryst15050481

6.Yan J, Zhao R*, He W, Wan M, Meng B. Mechanical behavior and underlying mechanism of nickel-based superalloy during coupling electrical pulse and ultrasonic treatment. Materials Science & Engineering A(2024) DOI:10.1016/j.msea.2024.146876

7. Zhao R*, Song Y, Kang H, Wan M. Microstructure evolution and mechanical properties of brazing joint for ultra-thin-walled Inconel 718 considering grain size effect and brazing temperature. Chinese Journal of Aeronautics(2024) DOI:10.1016/j.cja.2023.12.002

8.Cui X, Zhao R*, Wan M. Modified constitutive models for Inconel 718 considering current density and temperature in electrically assisted forming process. Chinese Journal of Aeronautics(2024) DOI:10.1016/j.cja.2023.12.007

9.Song Y, Zhao R, Wan M. Electric Current-Assisted TLP: Bonding of Ultrathin-Walled Inconel 718 Capillaries Temperature Field Simulation and Microstructural Analysis. Journal of Physics: Conference Series(2024) DOI:10.1088/1742-6596/2679/1/012015

10.Zhao R*, Zhang D, Wan M. A review of strengthening mechanisms and applications of the multifield-coupled manufacturing process.Journal of Materials Processing Technology(2023) DOI:10.1016/j.jmatprotec.2023.118128

11.Yan J, Zhao R, Wan M, et al. Coupled effect of pulsed current and ultrasonic vibration on deformation behavior of Inconel 718 sheet: phenomena and modeling. Journal of Materials Research and Technology(2023) DOI:10.1016/j.jmrt.2023.07.001

12.Tian H, Zhao J, Zhao R*, He W, Meng B, Wan M. The modified GTN model for fracture of nickel-based superalloys considering size effect and healing effect in pulsed current assisted deformation. International Journal of Plasticity(2023) DOI:10.1016/j.ijplas.2023.103656

13.Zhu B, Jia M, Zhao R*, Wan M. Comparative Analysis of Three Constitutive Models and Microstructure Characteristics of Nb521 during Hot Deformation. Crystals(2023) DOI:10.3390/cryst13081170


学术与社会服务

1、《Mechanical Engineering Science》期利青年编委



Zhao R, Ph.D.

Beihang University

School of Mechanical Engineering and Automation

rui_ht@126.com


Research Interests

High-Performance Manufacturing Technologies for Hypersonic Strong Pre-cooling Engines

Plastic constitutive model of multiphase alloys under external field-assisted excitation within the continuum mechanics framework

Metallurgical fracture mechanism of complex phase-transformation alloys

Sensing mechanism of micro-nano films and molecular dynamics simulations


Education

Beihang University, Beijing, China

Ph.D.,  in Aeronautics and Astronautics Manufacturing, 05/2018


Huazhong University of Science and Technology, Wuhan, Hubei Province, China

B.S., in Material Forming and Control Engineering, 07/2012


Research and Professional Experience

Vice Dean of Scientific Research

Jiangxi Research Institute of Beihang University, Jiangxi, China       2025 - present

Assistant Professor in the School of Mechanical Engineering and Automation

Beihang University, Beijing, China                             2020 – present

Postdoctoral Researcher School of Mechanical Engineering and Automation
Beihang University ,Beijing, China                             2018 – 2020