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講師、助理研究員

孟淼

日期:2019-07-31 來(lái)源: 作者:

教師簡(jiǎn)介:

 姓 名:

孟淼

 職 稱:

講師

 職 務(wù):

 

 所屬系:

材料成型與控制工程系

 郵 箱:

mengmiao.084@163.com

 電 話:

 

個(gè)人簡(jiǎn)歷:

孟淼,男,19898月生,工學(xué)博士。20193月博士畢業(yè)于西北工業(yè)大學(xué)材料加工工程專業(yè),并于5月加入十大正規(guī)外圍平臺(tái)排名外圍買球app十大平臺(tái),主要研究方向?yàn)楦咝阅茌p合金復(fù)雜構(gòu)件精確塑性成形理論與工藝研究。

l   教育簡(jiǎn)歷

2008/09 - 2012/07,安徽工業(yè)大學(xué),外圍買球app十大平臺(tái),本科

2012/09 - 2015/03,西北工業(yè)大學(xué),外圍買球app十大平臺(tái),工學(xué)碩士

2016/12-2017/03,英國(guó)諾丁漢大學(xué),機(jī)械、材料和制造工程系,研究助理

2015/04 - 2019/03,西北工業(yè)大學(xué),外圍買球app十大平臺(tái),工學(xué)博士

l  工作簡(jiǎn)歷

2019/05 - 至今, 十大正規(guī)外圍平臺(tái)排名,師資博士后

 

主講課程:

 

 

主要科研領(lǐng)域、方向:

l  科學(xué)研究

航空航天用高性能輕合金復(fù)雜構(gòu)件精確塑性成形理論與工藝;塑性成形過(guò)程宏微觀耦合建模仿真

 

主持或參與的項(xiàng)目:

l  科研項(xiàng)目

[1] 基于可控近平衡轉(zhuǎn)變的鈦合金近等溫變形非均質(zhì)多層級(jí)組織形成機(jī)理及調(diào)控研究,國(guó)家自然科學(xué)基金青年項(xiàng)目,52005145,2021.1-2023.12,主持

[2] 高溫鈦合金雙性能整體葉盤差溫成形過(guò)渡區(qū)組織熱-力路徑相關(guān)性及精確調(diào)控研究,安徽省自然科學(xué)基金青年項(xiàng)目,2008085QE229,2020.7-2022.6,主持

[3] 基于可控近平衡轉(zhuǎn)變的鈦合金近等溫梯度擠壓超細(xì)晶梯度組織形成機(jī)理研究,中國(guó)博士后科學(xué)基金面上資助項(xiàng)目,2020M681982,2020.11-2021.12,主持

[4] 鈦合金復(fù)雜構(gòu)件近等溫局部加載成形機(jī)理研究,十大正規(guī)外圍平臺(tái)排名青年教師科研創(chuàng)新啟動(dòng)專項(xiàng)B項(xiàng)目,JZ2020HGQB0220,2020.5-2022.4,主持

[5] XXX高強(qiáng)高韌鋁合金應(yīng)用技術(shù)研究,十三五軍委裝備預(yù)研共用技術(shù)項(xiàng)目,XXXXX,2019.1-2020.12,項(xiàng)目骨干

研究成果:

l  學(xué)術(shù)論文

[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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