China Mechanical Engineering ›› 2025, Vol. 36 ›› Issue (12): 3040-3046.DOI: 10.3969/j.issn.1004-132X.2025.12.029
Kun HE(
), Hechao ZHOU, Jimin ZHANG(
)
Received:2025-02-17
Online:2025-12-25
Published:2025-12-31
Contact:
Jimin ZHANG
通讯作者:
张济民
作者简介:何昆,男,1999年生,博士研究生。研究方向为列车被动安全。E-mail:kunhe@tongji.edu.cn基金资助:CLC Number:
Kun HE, Hechao ZHOU, Jimin ZHANG. Design of Negative Poisson's Ratio Metamaterial Filling Structures for Train Anti-climb Energy Absorbers[J]. China Mechanical Engineering, 2025, 36(12): 3040-3046.
何昆, 周和超, 张济民. 列车防爬吸能器负泊松比超材料填充结构设计[J]. 中国机械工程, 2025, 36(12): 3040-3046.
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URL: https://www.cmemo.org.cn/EN/10.3969/j.issn.1004-132X.2025.12.029
| 序号 | 迭代过程 | |||
|---|---|---|---|---|
| 1 | ![]() | ![]() | ![]() | ![]() |
| 2 | ![]() | ![]() | ![]() | ![]() |
| 3 | ![]() | ![]() | ![]() | ![]() |
| 4 | ![]() | ![]() | ![]() | ![]() |
Tab.1 Topology optimization iterative process
| 序号 | 迭代过程 | |||
|---|---|---|---|---|
| 1 | ![]() | ![]() | ![]() | ![]() |
| 2 | ![]() | ![]() | ![]() | ![]() |
| 3 | ![]() | ![]() | ![]() | ![]() |
| 4 | ![]() | ![]() | ![]() | ![]() |
| 结构 | t=0 | t=0.004 s | t=0.008 s | t=0.01 s |
|---|---|---|---|---|
| 1 | ![]() | ![]() | ![]() | ![]() |
| 2 | ![]() | ![]() | ![]() | ![]() |
| 3 | ![]() | ![]() | ![]() | ![]() |
| 4 | ![]() | ![]() | ![]() | ![]() |
Tab.2 Four negative Poisson's ratio structural deformation modes
| 结构 | t=0 | t=0.004 s | t=0.008 s | t=0.01 s |
|---|---|---|---|---|
| 1 | ![]() | ![]() | ![]() | ![]() |
| 2 | ![]() | ![]() | ![]() | ![]() |
| 3 | ![]() | ![]() | ![]() | ![]() |
| 4 | ![]() | ![]() | ![]() | ![]() |
| 结构 | 质量/g | 吸能量/kJ | 比吸能/(J·g | 初始峰值 碰撞力/kN |
|---|---|---|---|---|
| 1 | 256 | 2.97 | 11.59 | 10.5 |
| 2 | 272 | 4.94 | 18.17 | 14.5 |
| 3 | 236 | 3.38 | 14.32 | 16.4 |
| 4 | 326 | 5.57 | 17.08 | 20.2 |
Tab.3 Energy absorption parameters of negative Poisson's ratio structures
| 结构 | 质量/g | 吸能量/kJ | 比吸能/(J·g | 初始峰值 碰撞力/kN |
|---|---|---|---|---|
| 1 | 256 | 2.97 | 11.59 | 10.5 |
| 2 | 272 | 4.94 | 18.17 | 14.5 |
| 3 | 236 | 3.38 | 14.32 | 16.4 |
| 4 | 326 | 5.57 | 17.08 | 20.2 |
| 结构 | 工况 | 吸能量/kJ | 比吸能/(J·g | 比吸能劣化率/% |
|---|---|---|---|---|
| 所提结构 | 对心 | 1157.9 | 30.1 | 2.3 |
| 偏心 | 1127.2 | 29.4 | ||
| 蜂窝结构 | 对心 | 718.1 | 26.2 | 7.6 |
| 偏心 | 662.9 | 24.2 |
Tab.4 Crash response parameters of two types of energy absorbers under different operating conditions
| 结构 | 工况 | 吸能量/kJ | 比吸能/(J·g | 比吸能劣化率/% |
|---|---|---|---|---|
| 所提结构 | 对心 | 1157.9 | 30.1 | 2.3 |
| 偏心 | 1127.2 | 29.4 | ||
| 蜂窝结构 | 对心 | 718.1 | 26.2 | 7.6 |
| 偏心 | 662.9 | 24.2 |
| [1] | 邓功勋,许拓,胡正晟,等.高速列车乘员二次碰撞损伤试验研究[J].机械工程学报, 2025,61 (15):314-323. |
| DENG Gongxun, XU Tuo, HU Zhengsheng, et al. Experimental Study on Secondary Collision Damage of High-speed Train Occupants[J]. Journal of Mechanical Engineering, 2025,61 (15):314-323. | |
| [2] | 苏强,王旭东,张杰,等.地铁车辆前端组合式吸能结构的研究与分析[J].机械强度,2024,46(4):877-886. |
| SU Qiang, WANG Xudong, ZHANG Jie, et al. Research and Analysis of Front-end Combined Energy-absorbing Structure of Subway Vehicle[J]. Mechanical Strength,2024,46(4):877-886. | |
| [3] | 李飞,肖毅华.圆柱销-凹槽挤压式吸能结构的吸能特性和数值仿真研究[J].铁道科学与工程学报,2024,21(8):3298-3309. |
| LI Fei, XIAO Yihua. Energy Absorption Characteristics and Numerical Simulation of Cylindrical Pin-notch Extruded Energy Absorbing Structure[J]. Journal of Railway Science and Engineering,2024,21(8):3298-3309. | |
| [4] | PENG Y, DENG W, XU P, et al. Study on the Collision Performance of a Composite Energy-absorbing Structure for Subway Vehicles[J]. Thin-Walled Structures, 2015, 94: 663-672. |
| [5] | WANG J, LI Z, YANG H, et al. Design and Crashworthiness Evaluation of Corrugated Honeycomb with Multi-directional Energy Absorption Capacity[J]. International Journal of Solids and Structures, 2024, 302: 113001. |
| [6] | ZHANG H, LI Y, LIN Z, et al. Excellent Mechanical Properties of a Novel Double-diagonal Reinforced Mechanical Metamaterial with Tunable Poisson's Ratios Inspired by Deep-sea Glass Sponges[J]. Materials & Design, 2025, 250: 113628. |
| [7] | GAO J, XUE H, GAO L, et al. Topology Optimization for Auxetic Metamaterials Based on Isogeometric Analysis[J]. Computer Methods in Applied Mechanics and Engineering,2019,352:211-236. |
| [8] | GAO J, XIAO M, GAO L, et al. Isogeometric Topology Optimization for Computational Design of Re-entrant and Chiral Auxetic Composites [J]. Computer Methods in Applied Mechanics and Engineering,2020,362:112876. |
| [9] | LAKES R. Foam Structures with a Negative Poissons Ratio[J]. Science, 1987, 235(4792): 1038-1040. |
| [10] | REN L, ZHANG X, LI Z, et al. A Novel Negative Poisson's Ratio Structure with High Poisson's Ratio and High Compression Resistance and Its Application in Magnetostrictive Sensors[J]. Composite Structures, 2025, 351: 118599. |
| [11] | GUO F, HU X C, FU T. Dynamic Response Analysis of Three-dimensional U-shaped Negative Poisson's Ratio Periodic Structures[J]. European Journal of Mechanics-A/Solids, 2025, 111: 105576. |
| [12] | XIA L, BREITKOPF P. Design of Materials Using Topology Optimization and Energy-based Homogenization Approach in Matlab[J]. Structural and Multidisciplinary Optimization, 2015, 52(6): 1229-1241. |
| [13] | ANDREASSEN E, CLAUSEN A, SCHEVENELS M, et al. Efficient Topology Optimization in MATLAB Using 88 Lines of Code[J]. Structural and Multidisciplinary Optimization, 2011, 43(1): 1-16. |
| [14] | QIN D, LI M, WANG T, et al. Design and Mechanical Properties of Negative Poisson's Ratio Structure-based Topology Optimization[J]. Applied Sciences, 2023, 13(13): 7728. |
| [15] | 黄昊,王曾,李波,等.基于折衷规划法的航发齿轮传动壳体结构-热柔度协同拓扑优化[J].中国机械工程,2025,36 (7) :1471-1478. |
| HUANG Hao, WANG Zeng, LI Bo,et al. Structural-thermal Flexibility Cooperative Topology Optimization of Aircraft Gear Transmission Housing based on the Compromise Planning Method[J]. China Mechanical Engineering, 2025,36 (7) :1471-1478. | |
| [16] | GUEDES J, KIKUCHI N. Preprocessing and Postprocessing for Materials Based on the Homogenization Method with Adaptive Finite-element Methods[J]. Computer Methods in Applied Mechanics and Engineering, 1990, 83(2): 143-198. |
| [17] | 孟军辉,刘清洋,金泽华.基于复杂约束拓扑优化的负泊松比超材料设计[J].北京理工大学学报,2023,43(8):852-862. |
| MENG Junhui, LIU Qingyang, JIN Zehua. Design of Negative Poisson's Ratio Metamaterials Based on Complex Constrained Topology Optimization[J]. Journal of Beijing Institute of Technology,2023,43(8):852-862. |
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