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团队队伍

讲师、助理研究员

孟淼

日期:2019-07-31 来源:bevitor伟德官网 作者:

教师简介:

 姓 名:

孟淼

 职 称:

讲师

 职 务:

 

 所属系:

材料成型与控制工程系

 邮 箱:

mengmiao.084@163.com

 电 话:

 

个人简历:

孟淼,男,19898月生,工学博士。20193月博士毕业于西北工业大学材料加工工程专业,并于5月加入伟德bevictor中文版,主要研究方向为高性能轻合金复杂构件精确塑性成形理论与工艺研究。

l   教育简历

2008/09 - 2012/07,安徽工业大学,bevitor伟德官网,本科

2012/09 - 2015/03,西北工业大学,bevitor伟德官网,工学硕士

2016/12-2017/03,英国诺丁汉大学,机械、材料和制造工程系,研究助理

2015/04 - 2019/03,西北工业大学,bevitor伟德官网,工学博士

l  工作简历

2019/05 - 至今, bv伟德体育app,团队博士后

 

主讲课程:

 

 

主要科研领域、方向:

l  科学研究

航空航天用高性能轻合金复杂构件精确塑性成形理论与工艺;塑性成形过程宏微观耦合建模仿真

 

主持或参与的项目:

l  科研项目

[1] 基于可控近平衡转变的钛合金近等温变形非均质多层级组织形成机理及调控研究,国家自然科学基金青年项目,520051452021.1-2023.12,主持

[2] 高温钛合金双性能整体叶盘差温成形过渡区组织热-力路径相关性及精确调控研究,安徽省自然科学基金青年项目,2008085QE2292020.7-2022.6,主持

[3] 基于可控近平衡转变的钛合金近等温梯度挤压超细晶梯度组织形成机理研究,中国博士后科学基金面上资助项目,2020M6819822020.11-2021.12,主持

[4] 钛合金复杂构件近等温局部加载成形机理研究,bv伟德体育app青年教师科研创新启动专项B项目,JZ2020HGQB02202020.5-2022.4,主持

[5] XXX高强高韧铝合金应用技术研究,十三五军委装备预研共用技术项目,XXXXX2019.1-2020.12,项目骨干

研究成果:

l  学术论文

[1] M.       Meng, X.G. Fan, L.G. Guo, M. Zhan, Achieving fine-grained equiaxed alpha       via thermo-mechanical loading under off-equilibrium state in two-phase       Ti-alloys, Journal of Materials Processing Technology, 2018.5.2, 259: 397-408

[2] M.       Meng, X.G. Fan, Y.G. Chen, H.K. Guo, L.G. Guo, M. Zhan, Assessment of       alpha phase evolution in deformation of two-phase Ti-alloys under the       off-equilibrium condition, Materials Science & Engineering A,       2018.9.24, 738:389-398

[3] M.       Meng, H. Yang, X.G. Fan, S.L. Yan, A.M. Zhao, S. Zhu, On the modeling of       diffusion-controlled growth of primary alpha in heat treatment of       two-phase Ti-alloys, Journal of Alloys and Compounds, 2016.8.23, 691: 67-80

[4] M.       Meng, X.G. Fan, H. Yang; L.G. Guo, M. Zhan, P.F. Gao, Precipitation of       secondary alpha in competition with epitaxial growth of primary alpha in       two-phase titanium alloys, Journal of Alloys and Compounds, 2017.4.22,       714:294-392

[5] M.       Meng, X.G. Fan, P.F. Gao, L.G. Guo, M. Zhan, K. Wei. Microstructure       evolution in near isothermal forming of titanium alloy component.       Procedia Eng.2017, 207: 2173-2178

[6] X.G.       Fan, M. Meng, P.F. Gao, M. Zhan, Coupled effects of deformation and       cooling on the evolution of primary and secondary alpha of two-phase       Ti-alloys, Materials Science & Engineering A, 2017, 710: 271-279

[7] K.       Wei, X.G. Fan, M. Zhan, M. Meng. Robust optimization of the billet       forisothermal local loading transitional region of a Ti-alloy rib-web       component based on dual-response surface method. Frontiers of Mechanical       Engineering. 2018, 13(3): 376-384

[8] P.       Li, L.S. Wang, S.L. Yan, M. Meng, K.M. Xue. The role of non-equilibrium       grain boundary in micro-deformation and failure mechanisms of Bicrystal       structural tungsten. International Journal of Refractory Metals and Hard       Materials.2020, 105376

[9] P.       Li, L.S. Wang, S.L. Yan, M. Meng, K.M. Xue. Temperature Effect on the       Diffusion Welding Process and Mechanism of B2-O Interface in the       Ti2AlNb-based alloy: A Molecular Dynamics Simulation. Vacuum.2020, 109118

[10] K.       Wei, M. Zhan, X.G. Fan, H. Yang, P.F. Gao, M. Meng. Unequal-thickness       billet optimization in transitional region during isothermal local       loading forming of Ti-alloy rib-web component using response surface       method. Chinese Journal of Aeronautics. 2018, 31(4): 845-859

 

 

 

 

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