范智超

副教授

基本情况

范智超,力学与航空航天系,副教授

Email:fanzhichao@hnu.edu.cn

在《Science》,《Advanced Materials》和《Journal of the Mechanics and Physics of Solids》等旗舰期刊发表一系列SCI论文。目前研究方向为三维微纳结构设计,结构后屈曲理论与应用和柔性电子结构设计等。本人与清华大学、美国西北大学、浙江柔电院和湘雅医院等院校单位保持长期合作关系,可推荐和联合培养研究生。本人每周与学生一对一深入讨论课题进展,提供全方位指导和完善的资助奖励,支持学生参加国内外学术会议,同时积极推荐到国内外科研院所和知名科技企业实习、访学、深造或就业。

教育及工作经历

2011.09-2017.01:清华大学固体力学专业,获得工学博士学位,导师:黄克智 院士

2007.09-2011.07:重庆大学工程力学专业,获得工学学士学位,导师:彭向和 教授

2020.06至今:湖南大学机械与运载工程学院,力学与航空航天系,副教授

2017.01-2019.06: 清华大学航天航空学院,固体力学所,助理研究员,合作导师:张一慧 教授,黄永刚 院士

科研项目

主持的科研项目:

[1]中冶长天科研开发基础研究基金项目,2025-2026;

[2]湖南省自然科学基金青年基金A类(原湖南省杰 青),2025-2027;

[3]国家自然科学基金面上项目,2022-2025;

[4]湖南省自然科学基金青年项目,2021-2023;

[5]中央高校基本科研业务费项目,2020-2025;

[6]国家自然科学基金青年项目,2019-2021;

曾参与国家自然科学优秀青年基金1项、国家自然科学基金面上项目2项、教育部博士学科点专项科研基金1项。

学术成果

[1]Bingyang Du, Chenyang Wang, Fuhua Ye, Fan Z*(2025). "Optimal Design of Bistable Circular Arc Beam with Variable Thickness" Proceedings of the Royal Society A: Mathematical, physical and engineering sciences, 481(2317):20250093.

[2]Runchao Lv, Ye F, Fan Z*(2025). "Customized design of mechanical properties for irregular lattice structures with variable in-plane wall thickness" Journal of applied mechanics, 92(9):091008.

[3]Wan H, Chang J, Ye F, Fan Z*(2024). "Shape Programming of Porous Bilayer Hydrogel Structures" Journal of applied mechanics, 91(8):081010.

[4]Zhang Z, Ye F, Dong Y, Zhang F, Fan Z*(2024). "Post-buckling Analysis of Arch and Serpentine Structures Under End-to-End Compression" Journal of applied mechanics, 91(7): 071001.

[5]Ye F, Chang J, Fan Z*(2024). "Kirigami-based inverse design for 3D surfaces formed by mechanically guided method" Thin-walled structures,196, 111462.

[6]Cheng X†, Fan Z†, Yao S, Jin T, Lv Z, Lan Y, Bo R, Chen Y, Zhang F, Shen Z, Wan H, Huang Y, Zhang Y*(2023).“Programming 3D Curved Mesosurfaces using Microlattice Designs”Science, 379(6638): 1225-1232.

[7]Shu Z†, Ye F†, Liu P, Zeng P, Liang H, Chen L, Zhang X, Chen Y, Fan Z, Yu J, Duan H*(2023). "Programmable Nanoscale Crack Lithography for Multiscale PMMA Patterns" ACS applied materials & interfaces, 15, 23, 28349–28357

[8]Xu Z, Fan Z, Pang W, Zi Y, Zhang Y*(2022). "Inverse design strategies for buckling-guided assembly of 3D surfaces based on topology optimization" Extreme Mechanics Letters, 51:101582

[9]Fan Z†, Yang Y†, Zhang F, Xu Z, Zhao H, Wang T, Song H, Huang Y*, Rogers JA* and Zhang Y* (2020). "Inverse design strategies for 3D surfaces formed by mechanically guided assembly." Advanced materials: 1908424. (Frontispiece feature article)

[10]Fan Z, Hwang KC*, Rogers JA, Huang Y and Zhang Y* (2018). "A double perturbation method of postbuckling analysis in 2D curved beams for assembly of 3D ribbon-shaped structures." Journal of the mechanics and physics of solids 111: 215-238.

[11]Fan Z, Zhang Y*, Ma Q, Zhang F, Fu H, Hwang KC and Huang Y* (2016). "A finite deformation model of planar serpentine interconnects for stretchable electronics." International journal of solids and structures

[12]Fan Z, Wu J*, Ma Q, Liu Y, Su Y and Hwang KC* (2017). "Post-buckling analysis of curved beams." Journal of applied mechanics 84: 031007.

[13]Xu Z†, Fan Z†, Fu H, Liu Y, Zi Y, Huang Y*, Zhang Y* (2019). "An optimization-based approach for the inverse design of ribbon-shaped three-dimensional structures assembled through compressive buckling. " Physical review applied 11(5): 054053.

[14]Fan Z, Zhang F, Zhang Y* (2018). "Folding and assembly methods for forming three-dimensional mesostructures." Chinese science bulletin 66:

[15]Su Y†, Wu J†, Fan Z, Hwang KC*, Song J, Huang Y* and Rogers JA (2012). "Postbuckling analysis and its application to stretchable electronics." Journal of the mechanics and physics of solids 60: 487-508.

[16]Zhang F, Fan Z and Zhang Y* (2018). "A theoretical model of postbuckling in straight ribbons with engineered thickness distributions for three-dimensional assembly." International journal of solids and structures 147: 254-271.

[17]Xu Z, Fan Z, Zi Y, Zhang Y*, Huang Y* (2020). "An inverse design method of buckling-guided assembly for ribbon-type 3D structures." Journal of applied mechanics 87: 031004.

[18]Liu F, Chen Y, Song H, Zhang F, Fan Z, Liu Y, Feng X, Rogers JA, Huang Y and Zhang Y* (2018). "High performance, tunable electrically small antennas through mechanically guided 3D assembly. " Small: 1804055.

[19]Wang, H, Ning X, Li H, Luan H, Xue Y, Yu X, Fan Z, Li L, Rogers JA, Zhang Y* and Huang Y* (2017). "Vibration of mechanically-assembled 3d microstructures formed by compressive buckling." Journal of the mechanics and physics of solids 112: 187-208.

发明专利

基于网格划分与变截面曲杆连接的三维结构构建方法,专利号:ZL 2026 1 0190116.9,一种三维闭孔结构生成方法,专利号:ZL 2023 1 1680574.3,力学引导组装条带状三维结构的反向设计方法和设备,专利号:ZL202010190726.1

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