贾彬预聘助理教授

联系电话 :010-68912470

E-mail :bin.jia@bit.edu.cn

办公地点 :3号教学楼323-2室

  • 所在学科
    力学
  • 研究方向
    结构冲击动力学响应,先进防护材料与结构
  • 教育背景
    2009年9月—2013年6月 山东大学材料科学与工程学院 金属材料工程专业 本科
    2013年9月—2016年6月 山东大学材料科学与工程学院 材料工程专业 硕士
    2016年10月—2020年7月 法国国立工艺学院LEM3实验室 冲击动力学专业 博士
  • 工作经历
    2021年12月—至今 北京理工大学机电学院 助理教授、硕士生导师
  • 学术成果

    成果简介:

    研究工作围绕结构冲击动力学响应、先进防护材料与结构等领域开展。作为负责人主持科研项目3项,以一作/通讯身份发表学术论文20余篇。

    代表性论著:

    1. Experimental-numerical study on ballistic impact behavior of 316L austenitic stainless steel plates against blunt and ogival projectiles; International Journal of Hydrogen Energy; 2023, 48(23): 8526-8548; Quan Zhao, Xinke Xiao, Ruicong Ge, Yin Zhang, Xiaozhen Chen, Bin Jia*

    2. Enhancement of mechanical properties of commercially pure titanium by shock induced gradient microstructure with martensitic transformation; Materials Science and Engineering: A; 2023, 863: 144542; Yansong Guo, Bin Jia*, Qiang Zhou, Wen Chen, Yeping Ren, Qiang Zhou, Rui Liu, Ali Arab, Chun Ran, Pengwan Chen*

    3. Thermo-viscoplastic behavior of DP800 steel at quasi-static, intermediate, high and ultra-high strain rates; International Journal of Mechanical Sciences; 2022, 226,107408; Bin Jia*, Pengwan Chen, Alexis Rusinek, Qiang Zhou*

    4. Microstructure and mechanical properties of the bonding interface of explosively welded TA2/Q235 composite under dynamic shear loading; International Journal of Mechanical Sciences; 2022, 225, 107362; Qiang Zhou, Bin Jia*, Baoqiao Guo, Rui Liu, Lei Zhu, I. A. Bataev, Pengwan Chen*

    5. Thermo-viscoplastic behavior and constitutive relations for 304 austenitic stainless steel over a wide range of strain rates covering quasi-static, medium, high and very high regimes; International Journal of Impact Engineering; 2022, 164, 104208; Bin Jia*, Yaoyue Zhang, Alexis Rusinek, Xinke Xiao, Rugang Chai, Guochao Gu

    6. Effect of incorporating Lode angle parameter into a fracture criterion in predicting ballistic impact behavior of double-layered 2024-T351 aluminum alloy plates against blunt projectiles; International Journal of Impact Engineering; 2022, 160, 104082; Xinke Xiao, Yahui Shi, Yaopei Wang, Xiaozhen Chen, Bin Jia*

    7. Experimental and numerical investigation on the ballistic resistance of 2024-T351 aluminum alloy plates with various thicknesses struck by blunt projectiles; International Journal of Impact Engineering; 2022, 163, 104182; Jue Han, Yahui Shi, Qianqian Ma, Vladislav V. Vershinin, Xiaozhen Chen, Xinke Xiao*, Bin Jia*

    8. Shock induced gradient microstructure with hierarchical nanotwins to enhance mechanical properties of Ti6Al4V alloy; Journal of Materials Processing Technology; 2022, 307: 117693; Yansong Guo, Bin Jia*, Qiang Zhou, Rui Liu, Ali Arab, Wen Chen, Yeping Ren, Chun Ran, Pengwan Chen*

    9. Simple shear behavior of 2024-T351 aluminum alloy over a wide range of strain rates and temperatures: Experiments and constitutive modeling; International Journal of Impact Engineering; 2021, 156, 103972; Bin Jia*, Alexis Rusinek, Xinke Xiao, Paul Wood

    10. Simple shear behavior and constitutive modeling of 304 stainless steel over a wide range of strain rates and temperatures; International Journal of Impact Engineering; 2021, 154, 103896; Bin Jia*, Alexis Rusinek, Raphael Pesci, Richard Bernier, Slim Bahi, Amine Bendarma, Paul Wood

    11. Experimental and numerical investigation on the ballistic resistance of ZK61m magnesium alloy plates struck by blunt and ogival projectiles; International Journal of Impact Engineering; 2021, 158, 104021; Yunfei Deng, Ang Hu*, Xinke Xiao, Bin Jia*

    12. A novel technique for dynamic shear testing of bulk metals with application to 304 austenitic stainless steel; International Journal of Solids and Structures; 2020, 204, 153-171; Bin Jia*, Alexis Rusinek, Raphael Pesci, Richard Bernier, Slim Bahi, Paul Wood

    13. Thermo-viscoplastic behavior of 304 austenitic stainless steel at various strain rates and temperatures: Testing, modeling and validation; International Journal of Mechanical Sciences; 2020, 170, 105356; Bin Jia*, Alexis Rusinek, Raphael Pesci, Slim Bahi, Richard Bernier


  • 教学工作
    主要讲授课程:
    (1)本科生课程《工程材料基础》
    (2)研究生课程《结构冲击动力学响应》、《纳米科学与技术导论》
  • 荣誉奖励
    1、2020,法国,法国国立高等工艺学院,Pierre Bezier奖
    2、2016,中国,滨州市科学技术奖
    3、2015,中国,滨州市科学技术奖
    4、2014,中国,山东省冶金科技进步奖
  • 社会兼职
    International Journal of Impact Engineering、Materials Science and Engineering: A、Thin-walled Structure等多个学术期刊审稿人。