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用于无人机冲击缓冲和自供电实时传感的仿生扭曲双曲超材料。

Bioinspired twist-hyperbolic metamaterial for impact buffering and self-powered real-time sensing in UAVs.

作者信息

Chao Xujiang, Hu Haoteng, Lin Jianjie, Ge Xueyang, Wang Yajun, Xie Linjie, Hu Bofan, Meng Liang, Yu Shudong, Liang Fei, Qi Lehua, Wang Zhong Lin

机构信息

School of Mechanical Engineering, Northwestern Polytechnical University, Xi'an 710072, PR China.

Institute of Flexible Electronics (IFE), Northwestern Polytechnical University, Xi'an 710072, PR China.

出版信息

Sci Adv. 2025 Sep 5;11(36):eadw6179. doi: 10.1126/sciadv.adw6179. Epub 2025 Sep 3.

Abstract

Turbulence-induced vibrations pose substantial risks to aircraft structural integrity and flight stability, particularly in unmanned aerial vehicles (UAVs), where real-time impact monitoring and lightweight protection are critical. Here, we present a bioinspired twist-hyperbolic metamaterial (THM) integrated with a triboelectric nanogenerator (TENG) for simultaneously impact buffering and self-powered sensing. The THM-TENG protector exhibits tunable stiffness (40 to 4300 newtons per millimeter), ~70% impact energy absorption, and achieves a specific energy absorption of ~0.25 joules per gram at a weight of only 10 grams. Through triboelectrification, the protector converts mechanical energy into electrical signals, enabling real-time monitoring of impact loads up to 1000 newtons (≤5 hertz). Integrated with a microcontroller unit, wireless transmission, and alarm systems, THM-TENG demonstrates dual functionality in UAVs: mitigating vibration while providing real-time force monitoring, positioning, and early warning, all without external power sources. This work establishes a transformative framework for lightweight, multifunctional protective systems with applications in aerospace, robotics, and autonomous vehicles.

摘要

紊流引起的振动对飞机结构完整性和飞行稳定性构成重大风险,在无人机(UAV)中尤为如此,其中实时冲击监测和轻量化保护至关重要。在此,我们展示了一种与摩擦纳米发电机(TENG)集成的仿生扭曲双曲超材料(THM),用于同时进行冲击缓冲和自供电传感。THM-TENG保护器具有可调刚度(每毫米40至4300牛顿),能吸收约70%的冲击能量,在仅10克的重量下实现了约0.25焦耳/克的比能量吸收。通过摩擦起电,该保护器将机械能转化为电信号,能够实时监测高达1000牛顿(≤5赫兹)的冲击载荷。与微控制器单元、无线传输和报警系统集成后,THM-TENG在无人机中展现出双重功能:减轻振动,同时提供实时力监测、定位和预警,且无需外部电源。这项工作为具有轻量化、多功能特性的保护系统建立了一个变革性框架,可应用于航空航天、机器人技术和自动驾驶车辆领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1414/12407077/602ffb34e98a/sciadv.adw6179-f1.jpg

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