陈誉
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陈誉,讲师,硕士生导师,厦门大学机械设计制造及其自动化专业本科,中山大学固体力学专业博士(硕博连读),香港理工大学博士后,暨南大学博士后/教师。主要研究方向:轻质多孔材料与结构力学、冲击工程与安全防护。
主持教育部人文社科基金青年项目(交叉学科)、福建省自然科学基金、厦门市自然科学基金、国家重点实验室开放课题及企业委托课题等。以第一作者/通讯作者身份在工程技术、材料和力学领域主流期刊Composite Structures、International Journal of Mechanical Sciences、Engineering Structures、Aerospace Science and Technology、Structures、Mechanics of Materials、Europhysics Letters、Smart Materials and Structures、Materials Today Communication、Applied Composite Materials等上共发表SCI论文20余篇。
担任International Journal of Mechanical Sciences、Composite part B、Acta Mechanica Solida Sinica、Thin-walled Structures、European Journal of Mechanics-A/Solids、Construction & Building Materials、Engineering Failure Analysis、Materials & Design、Materials Today Communications、Nuclear Engineering and Design、Applied Mathematical Modelling、Polymer Testing、Journal of Sandwich Structures and Materials、Journal of the Brazilian Society of Mechanical Sciences and Engineering、Results in Engineering等期刊审稿人。
ORCID个人主页:https://orcid.org/0000-0002-2216-6234
欢迎具有机械、力学、复合材料等专业背景的同学加入课题组! 
微信号:clcy1991 邮箱: chenyu_9101@hqu.edu.cn 
发表论文
[24] Yuan Gong, Peng Zhang, Qinghua Hao, Yong Zhang, Jianxing Yang, Yu Chen*. Re-entrant auxetic honeycombs inspired by a new type of arrow symbol. Structures 87 (2026) 111591, https://doi.org/10.1016/j.istruc.2026.111591.
[23] Yu Chen*, Ziqian Pan, Jiaming Qin, Yizhi Wang, Chihui Lin. Novel auxetic hybrid honeycombs with enhanced design flexibility and mechanical properties. Composite Structures 389 (2026) 120388.
[22] Chuanlin Zhou, Feng Zhang, Xiaodong Zhang, Yu Chen*. Cell-Offset Honeycombs With Enhanced Plateau Stress and Energy Absorption Under In-Plane Impact Loading. Advanced Engineering Materials, 2026, https://doi.org/10.1002/adem.202502179
[21] Chuanlin Zhou, Feng Zhang, Yu Chen*. Novel Perforated Design Strategy for Honeycombs with Enhanced Specific Stiffness and Reduced Stress Concentration. Phys. Status Solidi B, 2026, https://doi.org/10.1002/pssb.202500496.
[20] Yu Chen*. Potential auxetic honeycomb system constructed from a new re-entrant block. Engineering Structures, 2025, 340: 120718.
[19] Chuanlin Zhou, Feng Zhang, Xiaodong Zhang, Yu Chen*. Hierarchical negative stiffness structures with improved resilience and energy absorption capability. Materials Today Communications, 2025, 42: 111371.
[18] Ziqian Pan, Yu Chen*, Xiaowen Xu*. Architected Cellular Structures with Enhanced Mechanical Properties: A Chemical Structure Formula-Inspired Design. Phys. Status Solidi B, 2025. DOI: 10.1002/pssb.202500376.
[17] Yu Chen*, Ziqian Pan. Equivalent elastic properties of a new stiff 3D auxetic architected cellular structure: analytical prediction. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2025, 47:281.
[16] Yu Chen*. Self-similar hierarchical honeycombs in two different fractal layouts: A comparative study of the in-plane crushing behaviors. Mechanics of Materials, 2024, 189: 104900.
[15] Yu Chen*, Wenjun Zhao, and Peijun Gao. In-Plane Crushing Behaviors of Hexagonal Honeycombs with Hollow-Circle Joint under Different Compressive Velocities. Phys. Status Solidi B, 2023, 2300127.
[14] Yu Chen*, Zhikun Yang and Liang He. In-plane shear stiffness of diversified hexagonal honeycombs: A simple energy-based approach. Europhysics Letters, 2023, 141: 62002.
[13] Yu Chen, Zhi-Wei Wang*. In-plane elasticity of the re-entrant auxetic hexagonal honeycomb with hollow-circle joint. Aerospace Science and Technology, 2022, 123: 107432.
[12] Yu Chen, Ming-Hui Fu*, Hong Hu*, Jian Xiong. Curved inserts in auxetic honeycomb for property enhancement and design flexibility. Composite Structures, 2022, 280: 114892.
[11] Yu Chen, Hong Hu*. In-plane elasticity of regular hexagonal honeycombs with three different joints: A comparative study. Mechanics of Materials, 2020, 148: 103496.
[10] Yu Chen, Adeel Zulifqar, Hong Hu*. Auxeticity from the Folded Geometry: A Numerical Study. Phys. Status Solidi B, 2020, 257, 1900361.
[9] Yu Chen, Ning Jiang, Hong Hu*. Mechanical modeling of an auxetic tubular braided structure: Experimental and numerical analyses. International Journal of Mechanical Sciences, 2019, 160: 182-191.
[8] Bin-Bin Zheng, Feng-Ming Liu, Ling-Ling Hu, Ming-Hui Fu*, Yu Chen*. An auxetic honeycomb structure with series-connected parallograms. International Journal of Mechanical Sciences, 2019, 161-162: 105073.
[7] Yu Chen, Binbin Zheng, Minghui Fu*, Linhua Lan, Wenzhi Zhang. Doubly unusual 3D lattice honeycomb displaying simultaneous negative and zero Poisson’s ratio properties. Smart Materials and Structures, 2018, 27, 045003 (11pp).
[6] Yu Chen, Minghui Fu*. Design and modeling of a combined embedded enhanced honeycomb with tunable mechanical properties. Applied Composite Materials, 2018, 25(5): 1041-1055.
[5] Yu Chen, Ming-Hui Fu*. Mechanical Properties of a Novel Zero Poisson’s Ratio Honeycomb. Advanced Engineering Materials, 2018, 20, 1700452.
[4] Yu Chen, Minghui Fu*. A novel three-dimensional auxetic lattice meta-material with enhanced stiffness. Smart Materials and Structures, 2017, 26, 105029(11pp).
[3] Minghui Fu, Yu Chen, Lingling Hu*. A novel auxetic honeycomb with enhanced in-plane stiffness and buckling strength. Composite Structures, 2017, 160: 574-585.
[2] Minghui Fu, Yu Chen, Lingling Hu*. Bilinear elastic characteristic of enhanced auxetic honeycombs. Composite Structures, 2017, 175: 101-110.
[1] Minghui Fu, Yu Chen, Wenzhi Zhang*, Binbin Zheng. Experimental and numerical analysis of a novel three‐dimensional auxetic metamaterial. Physica Status Solidi B-Basic Solid State Physics, 2016, 253(8): 1565-1575.
[1]
2013.8 -- 2018.6
中山大学
 固体力学
 博士研究生(硕博连读)
 工学博士学位
[2]
2009.9 -- 2013.7
厦门大学
 机械设计制造及其自动化
 本科
 工学学士学位
[1]
2023.2 -- 至今
华侨大学
机电及自动化学院
讲师
[2]
2020.8 -- 2023.1
暨南大学
力学博士后流动站/包装工程学院
博士后/教师
[3]
2018.8 -- 2020.7
香港理工大学
Institute of Textiles and Clothing
博士后(Research Assistant、Postdoctoral Fellow)
[1]25YJCZH027教育部人文社科基金青年项目(交叉学科):中华传统技艺在现代工程技术领域的创造性转化研究,2025-2028,(主持),
[2]2024J08060福建省自然科学基金创新青年项目:深度学习辅助的刚柔混合拉胀点阵结构设计及抗爆机理研究,2024-2027,(主持),
[3]3502Z202372039厦门市自然科学基金青年项目:基于复合材料缠绕层梯度负泊松比设计的高压储气瓶冲击损伤研究,2023-2026,(主持),
[4]605-50Y23016华侨大学科研启动项目:基于预制变截面曲梁的多稳态负刚度蜂窝结构力学性能研究,2023-2026,(主持),
[5]MCMS-E-0222Y01机械结构力学及控制国家重点实验室开放课题:面向直升机油箱抗坠毁设计的负泊松比复合夹芯结构冲击动力学响应研究,2022-2024,(主持),
[6]ZH22017003210052PWC珠海市基础与应用基础研究项目:电动汽车动力电池防护结构的宏-微观设计与抗冲击性能评价,2022-2025,(主持),
[7]GZ2022KF015企业委托课题:负泊松比V型导流夹芯结构的抗爆设计与防护性能评价,2022-2024,(主持),
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