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Active Coatings Technologies for Tailorable Military Coating Systems

机译:可定制的军用涂料系统的积极涂料技术

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The main objective of the U.S. Army's Active Coatings Technologies Program is to develop technologies that can be used in combination to tailor coatings for utilization on Army Materiel. The Active Coatings Technologies Program, ACT, is divided into several thrusts, including the Smart Coatings Materiel Program, Munitions Coatings Technologies, Active Sensor packages, Systems Health Monitoring, Novel Technology Development, as well as other advanced technologies. The goal of the ACT Program is to conduct research leading to the development of multiple coatings systems for use on various military platforms, incorporating unique properties such as self repair, selective removal, corrosion resistance, sensing, ability to modify coatings' physical properties, colorizing, and alerting logistics staff when tanks or weaponry require more extensive repair. A partnership between the U.S. Army Corrosion Office at Picatinny Arsenal, NJ along with researchers at the New Jersey Institute of Technology, NJ, Clemson University, SC, University of New Hampshire, NH, and University of Massachusetts (Lowell), MA, are developing the next generation of Smart Coatings Materiel via novel technologies such as nanotechnology, Micro-electromechanical Systems (MEMS), meta-materials, flexible electronics, electrochromics, electroluminescence, etc. This paper will provide the reader with an overview of the Active Coatings Technologies Program, including an update of the on-going Smart Coatings Materiel Program, its progress thus far, description of the prototype Smart Coatings Systems and research tasks as well as future nanotechnology concepts, and applications for the Department of Defense.
机译:美国军队的积极涂料技术计划的主要目标是开发能够组合使用的技术,以定制用于陆军物资的利用涂料。 Activings Technologies计划,ACT,分为几种推力,包括智能涂料物资程序,弹药涂料技术,活跃传感器包,系统健康监测,新技术开发,以及其他先进技术。该法案的目标是开展研究,导致多种涂料系统的开发,用于各种军用平台,采用独特的性能,如自修复,选择性去除,耐腐蚀,传感,修饰涂层物理性质的能力,色彩,并在坦克或武器需要更广泛的维修时提醒物流人员。 Picatinny Arsenal的美国陆军腐蚀办公室之间的伙伴关系与新泽西理工学院,NJ,克莱姆森大学,新罕布什尔大学,新罕布什尔大学,NH和马萨诸塞大学(洛厄尔大学)进行了发展下一代智能涂料材料通过新颖的技术,如纳米技术,微机电系统(MEMS),元材料,柔性电子,电致发光,电致发光等。本文将为读者提供有源涂料技术计划的概述,包括更新持续的智能涂料物资计划,其进度到目前为止,原型智能涂料系统和研究任务以及未来的纳米技术概念以及防御部的应用。

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