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{| class="wikitable" style="float:right; margin: -10px 0px 10px 20px; text-align:left" |<center>''' 伍 毅 '''<br><img src=" http://me.ustb.edu.cn/d/file/p/2023/05-11/2354555315090ada7d5c97e9439e604a.jpg " width="180"></center><small>[http://me.ustb.edu.cn/shiziduiwu/jiaoshixinxi/2022-11-11/668.html 北京科技大学机械工程学院] </small> |} '''伍 毅''',男,北京科技大学机械工程学院讲师。 ==人物简历== === 教育经历 === 2011.09-2015.06 湖南大学,车辆工程专业,获学士学位 2015.09-2022.07 湖南大学,机械工程专业,获博士学位 2019.09-2022.08 东巴黎大学 (Université Paris-Est), 法国国家科研中心-多尺度建模与仿真实验室 (MSME UMR 8208 CNRS), 获博士学位 (Docteur en Mécanique) === 工作经历 === 2022.10-至今 北京科技大学,机械工程学院,A类博士后 ==科研方向== 计算力学,[[拓扑优化方法]],不确定性,断裂相场法 ==社会兼职== 国际多学科优化协会ISSMO 会员。Material & Design, Ocean Engineering, International Journal of Computational method, Engineering Optimization 等SCI期刊审稿人。 ==学术成果== === 论著 === 发表论文十余篇,部分如下(*为通讯作者): [1] Wu, Y., Li, E., He, Z. C., Lin, X. Y., & Jiang, H. X. (2020). Robust concurrent topology optimization of structure and its composite material considering uncertainty with imprecise probability. Computer Methods in Applied Mechanics and Engineering, 364, 112927. [2] Wu, Y., Yvonnet, J., Li, P., & He, Z. C. (2022). Topology optimization for enhanced dynamic fracture resistance of structures. Computer Methods in Applied Mechanics and Engineering, 394, 114846. [3] He, Z. C., Wu, Y., & Li, E. (2018). Topology optimization of structure for dynamic properties considering hybrid uncertain parameters. Structural and Multidisciplinary Optimization, 57(2), 625-638. [4] Wu, Y., Lin, X. Y., Jiang, H. X., & Cheng, A. G. (2020). Finite element analysis of the uncertainty of physical response of acoustic metamaterials with interval parameters. International Journal of Computational Methods, 17(08), 1950052. [5] Wu, Y., Mi, D., Zhang, L. Z., & Cheng, A. G. (2020). Robust topological design of laminated composite plate under interval random hybrid uncertainties. International Journal of Materials and Product Technology, 61(2-4), 160-184. [6] Zhou, E. L., Wu, Y.*, Lin, X. Y., Li, Q. Q., & Xiang, Y. (2021). A normalization strategy for BESO-based structural optimization and its application to frequency response suppression. Acta Mechanica, 232(4), 1307-1327. [7] Jiang, H. X., Wei, B. L., Zhou, E. L., Wu, Y.*, & Li, X. K. (2021). Robust topology optimization for thermoelastic hierarchical structures with hybrid uncertainty. Journal of Thermal Stresses, 44(12), 1458-1478. [8] Wang, K. X., Zhou, E. L., Wei, B. L., Wu, Y.*, & Wang, G. (2022). An efficient and accurate numerical method for the heat conduction problems of thermal metamaterials based on edge-based smoothed finite element method. Engineering Analysis with Boundary Elements, 134, 282-297. [9] Chang, G.-B., Wang, C., Wu, Y.*, & Jiang, W.-K. (2022). A topology optimization method based on the edge-based smoothed finite element method. International Journal of Computational Methods. [10] Hu, H., Wu, Y., Batou, A., & Ouyang, H. (2022). B-spline based interval field decomposition method. Computers and Structures, 272, 106874. [11] Li, P., Wu, Y., & Yvonnet, J. (2021). A SIMP-Phase field topology optimization framework to maximize quasi-brittle fracture resistance of 2D and 3D composites. Theoretical and applied fracture mechanics, 114, 102919. [12] Li, P., Yvonnet, J., & Wu, Y. (2022). Improved fracture resistance of 3D-printed elastoplastic structures with respect to their topology and orientation of deposited layers. International Journal of Mechanical Sciences, 220, 107147.<ref>[https://metall.ustb.edu.cn/szdw/szdwxsjs/index.htm 北京科技大学机械工程学院]</ref> ==参考资料== {{reflist}} [[Category:教师]]
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