基本情况
出生年月:1990年6月
职称:教授
最高学位:博士研究生
主要研究方向:舰艇抗爆抗冲击、结构安全性与可靠性分析、多功能防护材料与结构
导师类别:学术型硕导博导/专业型硕导博导
工作单位:船海与能源动力工程学院港口航道与结构工程系
工作地址:武汉理工大学余家头校区船海与能源动力工程学院211办公室
Email:huangzhixin1802@163.com
教育及工作经历
2024年2月-至今,武汉理工大学,船海与能源动力工程学院,特设教授
2022年10月-2024年1月,武汉理工大学,船海与能源动力工程学院,副研究员
2020年7月-2022年9月,北京理工大学先进结构技术研究院,博士后
2017年9月-2022年6月,华中科技大学,固体力学,博士
2014年9月-2016年6月,武汉理工大学,船舶与海洋工程,硕士
2010年9月-2014年6月,武汉理工大学,船舶与海洋工程,本科
获奖情况
1.2024年,湖北省高层次人才
2.2024年,武汉英才优秀青年人才
3.2023年,湖北省博士后优秀人才跟踪支持计划
近期代表性学术成果
1.Huang Z, Zhang X, Wang Z. Transverse Crush of Thin-Walled Rectangular Section Tubes [J]. International Journal of Mechanical Sciences, 2017, 134: 144-157.(SCI, JCRQ1, IF:7.3)
2.Huang Z,Zhang X. Three-Point Bending Collapse of Thin-Walled Rectangular Beams [J]. International Journal of Mechanical Sciences, 2018, 144: 461-479.(SCI, JCRQ1, IF:7.3)
3.Huang Z, Zhang X, Zhang H. Energy Absorption and Optimization Design of Multi-Cell Tubes Subjected to Lateral Indentation [J]. Thin-Walled Structures, 2018, 131: 179-191.(SCI, JCRQ1, IF:6.3)
4.Huang Z, Zhang X. Three-Point Bending of Thin-Walled Rectangular Section Tubes with Indentation Mode [J]. Thin-Walled Structures, 2019, 137: 231-250.(SCI, JCRQ1, IF:6.3)
5.Huang Z, Zhang X, Yang C. Static and Dynamic Axial Crushing of Al/Crfp Hybrid Tubes with Single-Cell and Multi-Cell Sections [J]. Composite Structures, 2019, 226: 111023.(SCI, JCRQ1, IF:6.4)
6.Huang Z, Zhang X, Yang C. Experimental and Numerical Studies on the Bending Collapse of Multi-Cell Aluminum/Cfrp Hybrid Tubes [J]. Composites Part B: Engineering, 2020, 181: 107527.(SCI, JCRQ1, IF:13.1)
7.Huang Z, Zhang X. Crashworthiness and Optimization Design of Quadruple-Cell Aluminum/Cfrp Hybrid Tubes under Transverse Bending [J]. Composite Structures, 2020, 235: 111753.(SCI, JCRQ1, IF:6.4)
8.Huang Z, Zhang X, Fu X. On the Bending Force Response of Thin-Walled Beams under Transverse Loading [J]. Thin-Walled Structures, 2020, 154: 106807.(SCI, JCRQ1, IF:6.3)
9.Huang Z, Li Y, Zhang X, Chen W, Fang D. A Comparative Study on the Energy Absorption Mechanism of Aluminum/Cfrp Hybrid Beams under Quasi-Static and Dynamic Bending [J]. Thin-Walled Structures, 2021, 163: 107772.(SCI, JCRQ1, IF:6.3)
10.Huang Z, Li B, Ma L, Li Y. Mechanical Properties and Energy Absorption Performance of Bio-Inspired Dual Architecture Phase Lattice Structures [J]. Mechanics of Advanced Materials and Structures, 2022, 29(3): 1-11.(SCI, JCRQ1, IF:4.0)
11.Yang H, Cao X, Liao B, Wang G, Huang Z*, Li Y. Mechanical Properties of Bio-Molecular Inspired Mnl2n Cage-Lattices: Simulations & Experiments [J]. Materials Science and Engineering: A, 2021, 826: 141991.(SCI, JCRQ1, IF:6.4)
12.Ren X, Zhang X, Huang Z*, Li Y. Effective Impulse for Fully Clamped Rectangular Plates under Internal Blast Loading [J]. Acta Mechanica Solida Sinica, 2021, 35 (3): 481-494.(SCI, JCRQ2, IF:2.2)
13.Zhu X, Chen A, Huang Z*, Chen Z, Lin Y, Li Y. Quasi-Static Compression Response of the Origami Thin-Walled Structure [J]. Thin-Walled Structures, 2023, 183: 110376.(SCI, JCRQ1, IF:6.3)
14.Deng Y, Li B, Huang Z*, Lin Y, Li Y. Experimental and Numerical Studies on the Compression Responses of Novel Mixed Lattice Structures [J]. Materials Today Communications, 2022, 33: 104439.(SCI, JCRQ2, IF:3.8)
15.Chao H, Huang Z*, Ren X, Wang J, Li Y. Finite Element Simulation of the Penetration Resistance of Topological Interlocking Ceramic/Pe Laminates [J]. Composite Structures, 2023, 311: 116802.(SCI, JCRQ1, IF:6.4)
16.Li B, Huang Z*, Lin Y, Kang X, Li Y. Mechanical Properties of Novel Folded Kirigami Metamaterials under Quasi-Static Compression [J]. Smart Materials and Structures, 2022, 31(7): 075005.(SCI, JCRQ1, IF:4.8)
17.Huang Z, Zhang C. Numerical and Theoretical Studies on the Oblique Lateral Collapse of Aluminum/Cfrp Hybrid Beams [J]. Composite Structures, 2022, 300: 116058.(SCI, JCRQ1, IF:6.4)
18.Fan B, Xu Z, Lin Y, Huang Z*. Mechanical Properties of a Novel Two-Phase Hybrid Plate-Lattice Metamaterial [J]. Mechanics of Advanced Materials and Structures, 2022, 29(7): 1-12.(SCI, JCRQ1, IF:4.0)
19.Deng Y, Guo X, Lin Y, Huang Z*, Li Y. Dual-Phase Inspired Soft Electronic Sensors with Programmable and Tunable Mechanical Properties [J]. ACS Nano,2023,17,7,6423-6434.(封面论文SCI, JCRQ1, IF:18.02)
20.Liu S, Huang Z*, Li Y. Insight into the underwater implosion mechanisms of thin-walled metallic cylindrical shells [J]. Ocean Engineering, 2023, 275: 114129.(SCI, JCRQ1, IF:5.0)
21.Liu S, Huang
Z*,
Li Y. Dynamic response of spherical shells subjected to the
underwater impulse [J]. Ocean Engineering, 2023,
286:
115568.(SCI, JCRQ1, IF:4.0)
招生专业
博士:船舶与海洋工程、机械
硕士:船舶与海洋工程、机械、力学、土木水利
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