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罗阳军

领域:高端装备制造产业 学校:大连理工大学职称:教授

可靠性设计与优化,拓扑优化,空间薄膜结构...

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教育背景

2006.7 2009.6 兰斯大学 结构工程 博士 2004.3 2009.5 大连理工大学 力学 博士 2001.9 2004.1 西北农林科技大学 水利水电工程 硕士 1997.9 2001.7 西北农林科技大学 农业水利工程 学士

工作经历

2015.1 至今 大连理工大学 教师 2012.2 2014.2 香港中文大学 博士后 2009.7 2015.1 西北工业大学 教师

项目课题经历

承担国家级项目: [1] 国家重点研发计划课题:“电机优化设计平台-优化算法开发”(2017YFB0203604),2017年7月–2020年12月,主持 [2] 国家自然科学基金联合基金重点项目:“航空装备结构紧凑空间中集成布局优化设计方法”(U1508209),2016年1月–2019年12月,参与(排名第二) [3] 国家自然科学基金面上项目:“凸集-有界场非概率描述下的多源不确定性结构可靠性优化设计”(11972104),2020年1月–2023年12月,主持 [4] 国家ᠦ୔

论文、成果、著作等

近五年代表性论文: [1] Yangjun Luo*, Jian Xing, Zhan Kang. Topology optimization based on Kriging surrogate model and material-field series expansion: an effective non-gradient method. Computer Methods in Applied Mechanics and Engineering, 2020, 364, 112966. [2] Junjie Zhan, Yangjun Luo*, Xiaopeng Zhang, Zhan Kang. A general assessment index for non-probabilistic reliability of structures with bounded field and parametric uncertainties. Computer Method in Applied Mechanics and Engineering, 2020, DOI:10.1016/ j.cma. 2020.113046. [3] Yangjun Luo*, Jian Xing, Zhan Kang*, Junjie Zhan, Ming Li. Uncertainty of membrane wrinkling behaviors considering initial thickness imperfections. International Journal of Solids and Structures, 2020, 191-192: 264-277. [4] Jian Xing, Yangjun Luo*,Zhonghao Gao. A global optimization strategy based on Kriging surrogatemodel and parallel computing. Structural and Multidisciplinary Optimization, 2020, DOI: 10.1007/s00158-020-02495-6. [5] Yangjun Luo*, Jianwen Bao. A material-field series-expansion method for topology optimization of continuum structures. Computers & Structures, 2019, 225, 106122. [6] Yangjun Luo*, Junjie Zhan, Pai Liu. Buckling assessment of thin-walled plates with uncertain geometrical imperfections based on non-probabilistic field model. Thin-Walled Structures, 2019, 145, 106435. [7] Yangjun Luo*, Junjie Zhan, Jian Xing, Zhan Kang*. Non-probabilistic uncertainty quantification and response analysis of structures with a bounded field model. Computer Methods in Applied Mechanics and Engineering, 2019, 347: 663-678. [8] Junjie Zhan, Yangjun Luo*. Robust topology optimization of hinge-free compliant mechanisms with material uncertainties based on a non-probabilistic field model. Frontiers of Mechanical Engineering, 2019, 14(2): 201-212. [9] Zhan Kang*, Chunlei Wu, Yangjun Luo. Robust topology optimization of multi-material structures considering uncertain graded interface. Composite Structures, 2019, 208: 395-406. [10] Jian Xing, Yangjun Luo*, Junjie Zhan, Zhan Kang. Global shape optimization of fixtures to suppress wrinkles in large-displacement membrane structures. International Journal of Solids and Structures, 2018, 144-145: 301-312. [11] Huikai Zhang, Yangjun Luo, Zhan Kang*. Bi-material microstructural design of chiral auxetic metamaterials using topology optimization. Composite Structures, 2018, 195(1): 232-248. [12] Ming Li, Yanzhuang Niu, Huaping Wu, Xiaopeng Zhang, Yangjun Luo*, Zhan Kang*. Wrinkling and wrinkling-suppression in grapheme membranes with frozen zone. Thin Solid Films, 2017, 638: 345-353. [13] Yangjun Luo*, Yanzhuang Niu, Ming Li*, Zhan Kang. A multi-material topology optimization approach for wrinkle-free design of cable-suspended membrane structures. Computational Mechanics, 2017, 59(6): 967-980. [14] Yangjun Luo, Jian Xing, Yanzhuang Niu, Ming Li*, Zhan Kang*. Wrinkle-free design of thin membrane structures using stress-based topology optimization. Journal of the Mechanics and Physics of Solids, 2017, 102: 277-293. [15] Ming Li^, Yangjun Luo^, Huiping Wu, Kai Zhu, Yanzhuang Niu, Tengfei Zhao, Jian Xing, Zhan Kang*. A preneckling strategy makes stretched membranes with clamped ends wrinkle-free. Journal of Applied Mechanics, 2017, 84: 061006. [16] Yangjun Luo*, Ming Li, Zhan Kang. Optimal topology design for stress-isolation of soft hyperelastic composite structures under imposedboundary displacements. Structural and Multidisciplinary Optimization, 2017, 55: 1747-1758. [17] Pai Liu, Yangjun Luo, Zhan Kang*. Multi-material topology optimization considering interface behavior via XFEM and level set method. Computer Methods in Applied Mechanics and Engineering, 2016, 308: 113-133. [18] Yangjun Luo*, Ming Li, Zhan Kang. Topology optimization of hyperelastic structures with frictionless contact supports. International Journal of Solids and Structures, 2016, 81(3): 373-382. [19] Yangjun Luo*, Michael Yu Wang, Zhou Mingdong, Deng Zichen. Topology optimization of reinforced concrete structures considering control of shrinkage and strength failure. Computers & Structures, 2015, 157: 31-41. [20] Yangjun Luo*, Michael YuWang, Zhan Kang. Topology optimization of geometrically nonlinear structures based on an additive hyperelasticity technique. Computer Methods in Applied Mechanics and Engineering, 2015, 286: 422-441. [21] Yangjun Luo*, Xiaoxiang Wu, Mingdong Zhou, Michael Yu Wang. Simultaneousparameter and tolerance optimization of structures via probability-interval mixed reliability model. Structural and Multidisciplinary Optimization, 2015, 51: 705-719. [22] Jiandong Cai, Qi Xia*, Yangjun Luo, Li Zhang, Michael Yu Wang*. A variable-width harmonic probe for multifrequency atomic force microscopy. Applied Physics Letters, 2015, 106, 071901.

专利、著作版权等

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