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Degree:Doctor
Status:Employed
School/Department:机电与信息工程学院

岳振明

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Gender:Male

Education Level:Postgraduate (Doctoral)

Alma Mater:特鲁瓦技术大学

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    教授,博士生导师,现任教于山东大学机电与信息工程学院,山东大学-黑系新能源房车联合实验室主任,山东大学未来学者、威海市校地人才、国家自然科学基金通讯评审专家、教育部学位中心研究生论文评审专家、山东省科技专家库入库专家,主要从事金属精确塑性成形理论、结构力学仿真、数字孪生和智能化制造等方面的研究。近年来,已共发表科研论文五十余篇,授权发明专利十余项,出版学术专著1部。担任国际期刊MSEA、IJDM、JMPT、IJMS、Composite Part B等期刊审稿人,第三届国际损伤大会组织委员会成员。

    欢迎对编程、计算模拟和智能制造感兴趣的同学加入团队。


    主持承担项目列表:

  • 国家自然科学基金面上项目,***基复合材料强化机理及其构件成形工艺优化,2022.01-2025.12.

  • 国家重点研发计划子课题,***复合材料高通量近净形制备与应用,2022.11-2025.12.

  • 国家自然科学基金重大项目子课题,***复合构型能耗理论与跨尺度力学行为,2022.01-2026.12.

  • 装备预研共用技术,***,2023.01-2025.12.

  • 国家自然科学基金青年科学基金项目,***的延性损伤模型构建及应用研究,2017.01-2019.12.

  • 国防科技JCJQ项目(外协),***变形强化及失效行为实验研究,2022.01-2023.12.

  • 山东省重点研发计划示范工程子任务,***交通轻量化科技示范工程,2021.01-2024.12.

  • 山东省重点研发计划,***制备关键技术研发及应用,2018.01-2019.12.

  • 山东省自然科学基金,***双相钢全耦合损伤模型构建,2015.07-2016.12.

  • 国家博士后科学基金,***各向异性对板料回弹的影响,2015.09-2017.09.

  • 国家博士后科学基金,***铝合金板料损伤预测的影响研究,2019.01-2020.12.

  • 金属基复合材料国家重点实验室开放基金,***塑性变形及断裂行为的研究,2020.01-2021.12.

  • 山大-黑系联合实验室项目,IM19-2房车外观设计及整车研发,2022.01-2023.12。

 论文列表:

  • Z.R. Zhang, Z.M. Yue, Y.M. Bao, C.W. Xu, J. Gao, Strain ratio effects on microstructure discovery and low-cycle fatigue behavior of DP600 steel under cyclic shear path, Materials Science and Engineering: A, 2021-11-03,142291, https://doi.org/10.1016/j.msea.2021.142291.(5.234)

  • Zhang, Z, Yue, Z, Qi, J, Gao, J, Qiu, Y. Low cycle fatigue performance of DP900 steel under cyclic shear paths. Fatigue Fract Eng Mater Struct. 45,1,22-39.2021-10-27; 1- 18. doi:10.1111/ffe.13578 

  • Ge Wang, Heng Ouyang, Yishi Su, Qiang Guo, Ding-Bang Xiong, Qianduo Zhuang, Zhenming Yue, Zan Li, Di Zhang (2021). Heterostructured bulk aluminum with controllable gradient structure: Fabrication strategy and deformation mechanisms. Scripta Materialia, Volume 196, 15 April 2021, 113762. 

  • Behzad Sadeghi, Zhanqiu Tan, Jiashuo Qi, Zhiqiang Li, Xinrui Min, Zhenming Yue, Genlian Fan, Enhanced mechanical properties of CNT/Al composite through tailoring grain interior/grain boundary affected zones, Composites Part B: Engineering, Volume 223, 15 October 2021,109133 

  • Guangyuan Lin, Yifei Peng, Yusen Li, Hanzheng Liang, Zhilei Dong, Yihu Zhou, Zhenming Yue, Jie Zhang, Ding-Bang Xiong, Di Zhang, Remarkable anisotropic wear resistance with 100-fold discrepancy in a copper matrix laminated composite with only 0.2 vol% graphene, Acta Materialia, Volume 215, 15 August 2021, 117092

  • Kai Zhang, Houssem Badreddine, Zhenming Yue, Naila Hfaiedh, Khemais Saanouni, Jianlin Liu, Failure prediction of magnesium alloys based on improved CDM model, International Journal of Solids and Structures, Volumes 217–218,2021,Pages 155-177,,2021.01.21 

  • Zhenming Yue, Xinrui Min, Zhiyu Tuo, Celal Soyarslan, Xincun Zhuang, Houssem Badreddine, Khemais Saanouni, Jun Gao*, Broad stress triaxiality ratio band fracture experiments in DP900 metal sheets and corresponding predictive capability of advanced phenomenological and micromechanical fully coupled damage models, Materials Science and Engineering: A Structural Materials: Properties, Microstructure and Processing,Volume 811, 15 April 2021, 140978. 

  • Xiaowen Fu, Zhanqiu Tan, Xinrui Min, Zan Li, Zhenming Yue, Genlian Fan, Ding-Bang Xiong & Zhiqiang Li (2021) Trimodal grain structure enables high-strength CNT/Al-Cu-Mg composites higher ductility by powder assembly & alloying, Materials Research Letters, 9:1, 50-57,

  • Li, Y., Li, A., Yue, Z. et al. Springback prediction of AL6061 pipe in free bending process based on finite element and analytic methods. Int J Adv Manuf Technol, 2020, 109, 1789–1799;

  • Tuo, Z., Yue, Z*, Zhuang, X., Min, X., Badreddine, H., Qiu, L., & Gao, J. (2020). Comparison of two uncoupled ductile damage initiation models applied to DP900 steel sheet under various loading paths. International Journal of Damage Mechanics. https://doi.org/10.1177/1056789520945002. 

  • Yue Zhenming, Badreddine Houssem, Saanouni Khemais, Labergere Carl. Metal Forming Simulation Based on Advanced Mechanical Model Strongly Coupled with Ductile Damage, Springer Nature 2020 - Encyclopedia of Continuum Mechanics (连续介质力学百科全书), Springer-Verlag GmbH Germany, 2019.

  • Z. Yue, K. Cao, H. Badreddine, K. Saanouni, J. Gao, Failure prediction on steel sheet under different loading paths based on fully coupled ductile damage model, International Journal of Mechanical Sciences, 23-JAN-2019, 153, 1-9.

  • Yue Z M, Badreddine H, Saanouni K, et al. Experimental and numerical studies of AL7020 formability under orthogonal loading paths with considering yield surface distortion[J]. International Journal of Mechanical Sciences, 2017, 123: 151-161.