首页 / 师资队伍 / 教师信息 / 工程抗震研究中心教授 / 正文

李哲健

发布日期:2023-12-07   浏览量:

职称:教授

学位:博士

研究领域:结构防护;爆炸与冲击;折纸结构、超材料

招生方向:结构工程[081402]、防灾减灾工程及防护工程[081405]、土木水利(结构工程方向)[085900]

办公地点:工程抗震研究中心605

电子邮箱:zhejian.li@gzhu.edu.cn

教授,博士生导师,国家高层次青年人才计划入选者,国际防护结构学会优秀青年学者,全国爆炸力学优秀青年学者,广州市高层次人才,英国上市365官网最受学生欢迎教师。主要从事工程结构抗爆抗冲击以及新型轻质吸能结构的设计与其抗爆炸、抗冲击性能的研究。主持包括2项国家自然科学基金项目在内的项目共7项,作为核心成员参与国家、省、市级研究团队项目各1项,以第一、通讯作者发表SCI论文30余篇。已授权、申请专利9Theoretical and Applied Mechanics Letters、《防灾减灾学报》青年编委,Applied Sciences专刊客座编辑以及三十余个国际国内期刊审稿人。

教育背景

2016.02-2020.01,澳大利亚科廷大学,土木工程,博士

2018.11-2018.12,英国牛津大学,土木工程,访问学者

2010.06-2014.07,澳大利亚西澳大学,机械工程,一等荣誉学士

2012.01-2012.12,美国加州大学伯克利分校,机械工程,交流访问

职业经历

2023.08至今,英国上市365官网,工程抗震研究中心,教授

2021.07-2023.08,英国上市365官网,土木工程学院、工程抗震研究中心,副教授

2019.08-2021.03,澳大利亚科廷大学,土木与机械工程学院,博后研究员

2018.02-2018.08,澳大利亚西澳大学体育馆,皮划艇教练

2015.01-2015.12,澳大利亚珀斯Simmons Global公司,项目工程师

2012.12-2013.03,澳大利亚矿业合作研究中心CRC Mining Australia, 资产管理分析

科研项目

国家自然科学基金-国家高层次青年人才项目,主持,2023-2026

国家自然科学基金-青年项目,主持,2023-2025

国家自然科学基金-合作创新研究团队项目,核心成员,2026-2028

广东省自然科学基金-卓越青年团队项目,核心成员, 2024-2027

广州市高层次人才项目,主持,2024-2029

广州市高层次人才团队引进项目,核心成员,2024-2029

广州市科技计划基础与应用基础研究一般项目,主持,2023-2025

英国上市365官网第三批校内科研项目,主持,2023-2024

英国上市365官网“百人计划”科研启动项目,主持,2021-2026

深圳某公共建筑结构抗爆防护,企事业单位合作项目,子课题负责,2022-2024

获奖及荣誉

国际防护结构学会(IAPS)青年学者奖,2025

广州市高层次人才,2024

第四届全国爆炸力学优秀青年学者,2023

入选国家高层次青年人才计划,2022

英国上市365官网第十四届最受学生欢迎教师,2022

英国上市365官网“百人计划”青年杰出人才,2021

2019年度国家优秀自费留学生奖学金2020

SAMIO2019会议优秀报告奖2019

科廷大学优秀博士生交流奖学金,2018

7OSME会议Gabriella & Paul Rosenbaum基金会奖2018

科廷大学国际研究生奖学金,2016

澳大利亚研究理事会联系基金奖学金,2016

澳大利亚矿业合作研究中心研究奖学金,2012

Robert & Maude Gledden 交流奖学金2011

西澳大学工程学院国际学生奖学金,2010

近期发表的文章

[1] W. Zhao, Z. Li*, H. Hao, W. Chen, Impact attenuation of a novel highway crash cushion using a kirigami corrugated honeycomb core, Thin-Walled Structures, 224 (2026) 114703.

[2] X. Xiang, N.S. Ha, W. Qiang, Y. Wu, Z. Qiu, Z. Li*, X. Zhang*, Dynamic properties of shear thickening fluid-filled origami tubes, Structures, 86 (2026) 111438.

[3] L. Lam, W. Chen*, H. Hao, Z. Li, Numerical study of blast mitigation performance of sacrificial cladding using corrugated tilted honeycomb (CTH) as core, Structures, 86 (2026) 111473.

[4] X. Wang, Z. Li*, H. Hao, W. Chen, Experimental study on energy absorption performance of kirigami-modified honeycomb module for crash cushion, Engineering Structures, 353 (2026) 122227.

[5] R. Yan, Z. Li*, Y. Wen, X. Wen, X. Xiang*, H. Hao, W. Chen, Impact response of foam-filled Kirigami corrugated sandwich structures, Structures, 82 (2025) 110770.

[6] C. Yuan, X. Fang, Z. Li*, Q. Kong, W. Chen, H. Hao*, A novel BWBN-integrated physics-informed neural network for advanced hysteretic modeling of RC structures under cyclic loads, Engineering Structures, 345 (2025) 121542.

[7] X. Fan, Z. Li*, H. Hao*, W. Chen, Blast mitigation of a novel curtain-type blast wall, International Journal of Mechanical Sciences, 290 (2025) 110112.

[8] L. Lam, W. Chen, H. Hao*, Z. Li, Blast mitigation performance of sacrificial cladding with shear thickening fluid-filled origami metastructure core, Engineering Structures, 344 (2025) 121415.

[9] Q. Yang, Z. Li*, H. Hao, A.W. Lacey, W. Chen, Dynamic uniaxial crushing behaviour of three orthogonally graded stacked miura-ori metastructures, Journal of Sandwich Structures & Materials, 28 (2025) 10996362251364975.

[10] Q. Yang, Z. Li*, H. Hao*, W. Chen, Impact performance of stacked Miura-ori metastructure, Structures, 79 (2025) 109560.

[11] Z. Li, W. Chen*, G. Sun, Y. Chen, Z. Li, H. Li, H. Hao*, Dynamic mechanical properties of nanoparticle-stabilized foam concrete (NFC), Case Studies in Construction Materials, 22 (2025) e04805.

[12] R. Yan, Z. Li*, H. Hao, W. Chen, Crashworthiness analysis of new curved Kirigami corrugated structures, Materials & Design, 249 (2024) 113557.

[13] Z. Li*, L. Wang, R. Yan, Y. He, H. Hao*, Y. Lin, W. Chen, Impact performance of curved double arrow and stacked Miura-ori panels, Engineering Structures, 323 (2025) 119319.

[14] 远鹏, 王凌峰, 秋松, 李哲健*, 郝洪, , 多折角梯形台面折纸夹层结构的冲性能爆炸与冲, 44 (2024) 043103-043101.

[15] L. Lam, W. Chen*, H. Hao*, Z. Huang, Z. Li, Impact performance of sandwich cladding with corrugated tilted honeycomb core, Structures, 61 (2024) 106072.

[16] Z. Li*, X. Wen, T. Ren, P. Zhou, Y. Wen, H. Hao*, W. Chen, Experimental evaluation on the mitigation performance of double-layered Kirigami corrugated cladding against impact load, International Journal of Impact Engineering, 187 (2024) 104917.

[17] G. Wang, Z. Li*, Z. Lu, J. Liu*, Local impact resistance of curved sandwich panel with Miura-ori foldcore, Engineering Structures, 300 (2024) 117232.

[18] L. Lam, W. Chen*, H. Hao*, Z. Li, Dynamic crushing and energy absorption of bio-inspired shear thickening fluid-filled origami metastructure, Engineering Structures, 299 (2024) 117122.

[19] Y. Zhang, Y. Wen, B. Liu, X. Wen, Z. Li*, H. Hao, W. Chen, Performance of foam-filled kirigami corrugated sandwich panels as sacrificial cladding against blast loads, Journal of Building Engineering, 76 (2023) 107033.

[20] L. Lam, W. Chen*, H. Hao*, Z. Li, Crushing behaviour of corrugated tilted honeycomb core inspired by plant stem, Thin-Walled Structures, 188 (2023) 110852.

[21] Z. Li*, Y. Wen, X. Wen, H. Hao*, W. Chen, Single and double-layered Kirigami corrugated sandwich panels against impact loads, Structures, 51 (2023) 402-414.

[22] Q. Yang, Z. Li*, H. Hao*, W. Chen, Compressive mechanical properties and dynamic behaviour of origami-inspired tri-directional auxetic metamaterial, Engineering Structures, 281 (2023) 115751.

[23] L. Lam, W. Chen*, H. Hao*, Z. Li, N.S. Ha, Dynamic crushing performance of bio-inspired sandwich structures with beetle forewing cores, International Journal of Impact Engineering, 173 (2023) 104456.

[24] Z. Li*, X. Wen, Y. Wen, W. Chen, H. Hao*, Y. Zhang, B. Liu, Crashworthiness analysis and parametric investigation on kirigami corrugated structures, Thin-Walled Structures, 181 (2022) 110136.

[25] Z. Li*, R. Fang, Q. Yang, W. Chen, H. Hao*, Q. Kong, Y. Shi, Performance of sandwich cladding with modular truncated square pyramid foldcore under projectile impact, International Journal of Impact Engineering, 166 (2022) 104258.

[26] Q. Yang, Z. Li*, W. Chen, H. Hao*, Parametric study and modification of the truncated square pyramid (TSP) folded structure for effective energy absorption under static and dynamic crushing, Journal of Aerospace Engineering, 35 (2022) 04022086.

[27] Z. Li*, Q. Yang, W. Chen, H. Hao*, R. Fang, J. Cui, Dynamic compressive properties of reinforced and kirigami modified honeycomb in three axial directions, Thin-Walled Structures, 171 (2022) 108692.

[28] L. Lam, W. Chen*, H. Hao*, Z. Li, N.S. Ha, T.M. Pham, Numerical study of bio-inspired energy-absorbing device using shear thickening fluid (STF), International Journal of Impact Engineering, 162 (2022) 104158.

[29] Z. Li, Q. Yang, W. Chen*, H. Hao*, C. Matenga, Z. Huang, R. Fang, Impact response of a novel sandwich structure with Kirigami modified corrugated core, International Journal of Impact Engineering, 156 (2021) 103953.

[30] Z. Li, Q. Yang, R. Fang, W. Chen*, H. Hao*, Crushing performances of Kirigami modified honeycomb structure in three axial directions, Thin-Walled Structures, 160 (2021) 107365.

[31] Z. Li, Q. Yang, R. Fang, W. Chen*, H. Hao*, Origami metamaterial with two-stage programmable compressive strength under quasi-static loading, International Journal of Mechanical Sciences, (2020) 105987.

[32] Z. Li, W. Chen*, H. Hao*, Q. Yang, R. Fang, Energy absorption of Kirigami modified corrugated structure, Thin-walled Structures, 154 (2020) 106829.

[33] Z. Li, W. Chen*, H. Hao*, Mechanical properties of carbon foams under quasi-static and dynamic loading. International Journal of Mechanical Sciences, 161-162 (2019) 105039.

[34] Z. Li, W. Chen*, H. Hao*, Functionally graded truncated square pyramid folded structures with foam filler under dynamic crushing, Composites Part B: Engineering, 177 (2019) 107410.

[35] Z. Li, W. Chen*, H. Hao*, Dynamic crushing and energy absorption of foam filled multi-layer folded structures: Experimental and numerical study, International Journal of Impact Engineering, 133 (2019) 103341.

[36] Z. Li, W. Chen*, H. Hao*, Numerical study of blast mitigation performance of folded structure with foam infill, Structures, 20 (2019) 581-593.

[37] Z. Li, W. Chen*, H. Hao*, J. Cui, Y. Shi, Experimental study of multi-layer folded truncated structures under dynamic crushing, International Journal of Impact Engineering, 131 (2019) 111-122.

[38] Z. Li, W. Chen*, H. Hao*, Numerical study of open-top truncated pyramid folded structures with interconnected side walls against flatwise crushing, Thin-Walled Structures, 132 (2018) 537-548.

[39] Z. Li, W. Chen*, H. Hao*, Blast mitigation performance of cladding using Square Dome-shape Kirigami folded structure as core, International Journal of Mechanical Sciences, 145 (2018) 83-95.

[40] Z. Li, W. Chen*, H. Hao*, Crushing behaviours of folded kirigami structure with square dome shape, International Journal of Impact Engineering, 115 (2018) 94-105.

[41] Z. Li, W. Chen*, H. Hao*, Numerical study of sandwich panel with a new bi-directional Load-Self-Cancelling (LSC) core under blast loading, Thin-Walled Structures, 127 (2018) 90-101.


上一条:陈洋洋

下一条:黄襄云