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用于军事监测应用的传感器的增材制造

Additive Manufacturing of Sensors for Military Monitoring Applications.

作者信息

Bird David T, Ravindra Nuggehalli M

机构信息

Picatinny Arsenal, NJ U.S. Army Combat Capabilities Development Command Armaments Center (CCDC AC), Wharton, NJ 07885, USA.

Interdisciplinary Program in Materials Science and Engineering, New Jersey Institute of Technology, Newark, NJ 07102, USA.

出版信息

Polymers (Basel). 2021 Apr 30;13(9):1455. doi: 10.3390/polym13091455.

Abstract

The US Department of Defense (DoD) realizes the many uses of additive manufacturing (AM) as it has become a common fabrication technique for an extensive range of engineering components in several industrial sectors. 3D Printed (3DP) sensor technology offers high-performance features as a way to track individual warfighters on the battlefield, offering protection from threats such as weaponized toxins, bacteria or virus, with real-time monitoring of physiological events, advanced diagnostics, and connected feedback. Maximum protection of the warfighter gives a distinct advantage over adversaries by providing an enhanced awareness of situational threats on the battle field. There is a need to further explore aspects of AM such as higher printing resolution and efficiency, with faster print times and higher performance, sensitivity and optimized fabrication to ensure that soldiers are more safe and lethal to win our nation's wars and come home safely. A review and comparison of various 3DP techniques for sensor fabrication is presented.

摘要

美国国防部(DoD)认识到增材制造(AM)的多种用途,因为它已成为多个工业部门中广泛工程部件的常用制造技术。3D打印(3DP)传感器技术具有高性能特性,可用于在战场上追踪单个作战人员,提供针对武器化毒素、细菌或病毒等威胁的防护,并能实时监测生理事件、进行先进诊断和提供关联反馈。通过增强对战场态势威胁的感知,为作战人员提供最大程度的保护,这使其相对于对手具有明显优势。有必要进一步探索增材制造的各个方面,如更高的打印分辨率和效率、更快的打印时间、更高的性能、灵敏度以及优化制造,以确保士兵更加安全且具备更强杀伤力,从而赢得国家战争并安全回家。本文对用于传感器制造的各种3D打印技术进行了综述和比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85ab/8125590/d6d9d6381b64/polymers-13-01455-g001.jpg

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