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陈誉

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讲师(高校)
硕士生导师
- 性别:男
- 学历:博士研究生
- 学位:工学博士学位
- 入职时间:2023-02-23
- 所在单位:taptap点点电子机电及自动化学院
- 电子邮箱:2412a7267dbccf74a001afc6f3bdc175d8ea6c63e946590d74d1bbc3c33540977e29988325a09f18b9b37305ffdae4cc31ba7ade07d0995a5336eee8d321b1de1a1be44ce662a9a714dc00cee0d670d06bc387c190a225c84cf4b72fbc2f207bbf212b40702bbddfdac92b84739ff83cf763f5a30a74d6c54f0b4f47b35a5782
- 在职信息:在岗
访问量:
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[1]Ziqian Pan(研究生), Yu Chen,* and 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.
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[2]Yu Chen*. Potential auxetic honeycomb system constructed from a new re-entrant block. Engineering Structures 340 (2025) 120718.
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[3]Yu Chen*. Self-similar hierarchical honeycombs in two different fractal layouts: A comparative study of the in-plane crushing behaviors. Mechanics of Materials 189 (2024) 104900.
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[4]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.
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[5]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.
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[6]Chuanlin Zhou(研究生), Feng Zhang, Xiaodong Zhang, Yu Chen*. Hierarchical negative stiffness structures with improved resilience and energy absorption capability. Materials Today Communications 42 (2025) 111371.
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[7]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.
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[8]Minghui Fu, Yu Chen, Lingling Hu*. Bilinear elastic characteristic of enhanced auxetic honeycombs. Composite Structures, 2017, 175: 101-110.
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[9]Minghui Fu, Yu Chen, Lingling Hu*. A novel auxetic honeycomb with enhanced in-plane stiffness and buckling strength. Composite Structures, 2017, 160: 574-585.
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[10]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.