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陈成

姓名 陈成
性别
学校 西北工业大学
部门 航空学院
学位 哲学博士学位
学历 博士研究生毕业
职称 副高
联系方式 实用新型1875包写包过
邮箱 cheng.chen@nwpu.edu.cn
   
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个人经历 personal experience 教育经历          2018-2019麦吉尔大学博士后材料工程 2013-2018麦吉尔大学工学博士材料工程 2010-2013西北工业大学工学硕士材料学 2006-2010湖北工业大学工学学士材料工程

教育教学

教育教学 Education and teaching 招生信息 招收固体力学,航空器结构与适航技术,航宇结构与制造工程,动力学与控制等方向硕士研究生,欢迎咨询。课题组与加拿大麦吉尔大学、多伦多大学等国外知名研究机构密切合作,建立了研究生联合培养机制,可推荐深造,鼓励学生出国开展学术交流和研究。

荣誉获奖

科学研究 Scientific Research 课题组基于国家超算平台和高性能计算集群,开展:极端条件下航空工程材料的多尺度力学行为研究航空工程材料微纳米力学与晶态微结构形变机理研究航空关键零部件的点阵结构(轻量化)设计结合点阵结构,拓扑优化和增材制造技术的无人机结构强度设计

科学研究

学术成果 Academic Achievements A Combined Atomistic-Continuum Study on the Unfaulting of Single and Multi-layer Interstitial Dislocation Loops in Irradiated FCC and HCP Metals, Cheng Chen*, J Song*, International Journal of Plasticity (2022) Comprehensive Study of Vacancy Frank Loop Unfaulting: Atomistic Simulations and Predictive Model,  Cheng Chen*, J Zhang, J Song*, Acta Materialia (2021)Negative poisson's ratio in graphene miura origami, F Meng, S Chen, W Zhang, P Ou, J Zhang, Cheng Chen*, J Song* Mechanics of Materials (2020)Atomistic simulations of vibration and damping in three-dimensional graphene honeycomb nanomechanical resonators, B Li, Y Wei, F Meng, P Ou, Y Chen, L Che, Cheng Chen*, J Song, Superlattices and Microstructures (2020)Vacancy-assisted core transformation and mobility modulation of a-type edge dislocations in wurtzite GaN, Cheng Chen, F Meng, P Ou, J Song*, J. Phys. D: Appl. Phys. 52 495301Effect of indium doping on motions of a-prismatic edge dislocations in wurtzite gallium nitride, Cheng Chen,F Meng, P Ou, J Song*, J. Phys.: Condens. Matter. 31 315701.Effects of material heterogeneity on self-rolling of strain engineered membranes. Cheng Chen, P Song, F Meng, P Ou, X Liu, J Song*, Extreme Mechanics Letters 29 (2019) 100451.Predictive modeling of misfit dislocation induced strain relaxation effect on self-rolling of strain-engineered nanomembranes, Applied Physics Letters 113, 112104 (2018) Cheng Chen, P Song, F Meng, P Ou, X Liu, J Song* Effect of Topological Patterning on Self-Rolling of Nanomembranes, Nanotechnology 29 (2018), 345301, Cheng Chen, P Song, F Meng, P Ou, X Liu, J Song* Quantitative analysis and predictive engineering of self-rolling of nanomembranes under anisotropic mismatch strain, Nanotechnology 28 (48), 485302. Cheng Chen, P Song, F Meng, X Li, X Liu, J Song* Effects of Mg and Al Doping on Dislocation Slips on GaN, Journal of Applied Physics, 119, 064302:1-8, Cheng Chen, F. Meng, and J. Song* Core Structures Analysis of (a+c)-Edge Dislocations in Wurtzite GaN through Atomistic Simulations and Peierls-Nabarro Model, Journal of Applied Physics, 117, 194301:1-7. Cheng Chen, F. Meng, and J. Song*Phase-field crystal modeling of shape transition of strained islands in heteroepitaxy, Sci China-Phys Mech Astron, Vol. 55 No. 11 (2012). Cheng Chen*, Z Chen, J Zhang, X Du. Faceting transitions in crystal growth and heteroepitaxial growth in the anisotropic phase-field crystal model, Chinese Phys B, No. 11 (2012) 118103. Cheng Chen*, Z Chen, J Zhang, T Yang, X Du.  Simulation of morphological evolution and crystallographic tilt in heteroepitaxial growth using phase-field crystal method". Acta Phys. Sin. 2012, 61(10): 108103. Cheng Chen*, Z Chen, J Zhang, T Yang.          Conjugated π Electron Engineering of Generalized Stacking Fault in Graphene and h-BN, Nanotechnology 29 (2018), 09LT01. B Ouyang, Cheng Chen, J Song*Deformation behaviors of three-dimensional graphene honeycombs under out-of-plane compression: Atomistic simulations and predictive modeling, Journal of the Mechanics and Physics of Solids 109, 241-251. F Meng, Cheng Chen, D Hu, J Song*Lattice trapping and crack decohesion in graphene, Carbon 116, 33-39. F Meng, Cheng Chen, J Song*Dislocation Shielding of a Nanocrack in Graphene: Atomistic Simulations and Continuum Modeling, The Journal of Physical Chemistry Letters, 6, 4038-4042. F. Meng, Cheng Chen, and J. Song*Single Molybdenum Center Supported on N-Doped Black Phosphorus as an Efficient Electrocatalyst for Nitrogen Fixation, Pengfei Ou, Xiao Zhou, Fanchao Meng, Cheng Chen, Yiqing Chen, Jun Song*, Nanoscale, 2019, 11, 13600-13611Reduction of Fermi level pinning at Cu–BP interfaces by atomic passivation, Pengfei Ou, Xiao Zhou,Cheng Chen, Fanchao Meng, Yiqing Chen, Jun Song*, Nanoscale, 2019, 11, 11569-11576

学术成果

综合介绍

陈成