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用于碰撞危险防护和自供电监测的金属3D打印适形多功能空间织物

Conformable Multifunctional Space Fabric by Metal 3D Printing for Collision Hazard Protection and Self-Powered Monitoring.

作者信息

Sun Yanshuo, Li Chengyu, Xu Zijie, Cao Yaxing, Sheng Hengrui, Wang Zhong Lin, Cao Leo N Y

机构信息

Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 101400, P. R. China.

School of Nanoscience and Engineering, University of Chinese Academy of Sciences, Beijing 100049, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Dec 13;15(49):57726-57737. doi: 10.1021/acsami.3c15232. Epub 2023 Nov 29.

Abstract

The monitoring of space debris assumes paramount significance to ensure the sustainability and security of space activities as well as underground bases in outer space. However, designing a wide range monitoring system with easy fabrication, low power, and high precision remains an urgent challenge under the scarcity of materials and extreme environment conditions of outer space. Here, we designed a one-piece, robust, but flexible, and repairable 3D metal-printed triboelectric nanogenerator (FR-TENG) by incorporating the advantages of standardization and customization of outer space 3D metal printing. Inspired by the structure of hexagonal and pangolin scales, a curved structure is ingeniously applied in the design of 3D printed metal to adapt different curved surfaces while maintaining superior compressive strength, providing excellent flexibility and shape adaptability. Benefiting from the unique structural design, the FR-TENG has a minimum length of 1 cm with a weight of only 3.5 g and the minimum weight resolution detected of 9.6 g, with a response time of 20 ms. Furthermore, a multichannel self-powered collision monitoring system has been developed to monitor minor collisions, providing warnings to determine potential impacts on the space station and bases surfaces. The system may contribute to ensuring the successful completion of space missions and providing a safer space environment for the exploration of extraterrestrial life and the establishment of underground protective bases.

摘要

监测空间碎片对于确保太空活动以及外层空间地下基地的可持续性和安全性至关重要。然而,在外层空间材料稀缺和极端环境条件下,设计一种易于制造、低功耗且高精度的宽范围监测系统仍然是一项紧迫的挑战。在此,我们通过融合外层空间3D金属打印的标准化和定制化优势,设计了一种一体式、坚固但灵活且可修复的3D金属打印摩擦电纳米发电机(FR-TENG)。受六边形和穿山甲鳞片结构的启发,一种弯曲结构巧妙地应用于3D打印金属的设计中,以适应不同的曲面,同时保持卓越的抗压强度,提供出色的柔韧性和形状适应性。受益于独特的结构设计,FR-TENG的最小长度为1厘米,重量仅为3.5克,检测到的最小重量分辨率为9.6克,响应时间为20毫秒。此外,还开发了一种多通道自供电碰撞监测系统来监测微小碰撞,发出警报以确定对空间站和基地表面的潜在影响。该系统可能有助于确保太空任务的成功完成,并为探索外星生命和建立地下保护基地提供更安全的太空环境。

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