Pouchairet Jean-Laurent, Rossi Carole
LAAS-CNRS, University of Toulouse, 7 Avenue du Colonel Roche, 31077 Toulouse, France.
Micromachines (Basel). 2021 Jan 23;12(2):118. doi: 10.3390/mi12020118.
For the past two decades, many research groups have investigated new methods for reducing the size and cost of safe and arm-fire systems, while also improving their safety and reliability, through batch processing. Simultaneously, micro- and nanotechnology advancements regarding nanothermite materials have enabled the production of a key technological building block: pyrotechnical microsystems (pyroMEMS). This building block simply consists of microscale electric initiators with a thin thermite layer as the ignition charge. This microscale to millimeter-scale addressable pyroMEMS enables the integration of intelligence into centimeter-scale pyrotechnical systems. To illustrate this technological evolution, we hereby present the development of a smart infrared (IR) electronically controllable flare consisting of three distinct components: (1) a controllable pyrotechnical ejection block comprising three independently addressable small-scale propellers, all integrated into a one-piece molded and interconnected device, (2) a terminal function block comprising a structured IR pyrotechnical loaf coupled with a microinitiation stage integrating low-energy addressable pyroMEMS, and (3) a connected, autonomous, STANAG 4187 compliant, electronic sensor arming and firing block.
在过去二十年里,许多研究团队通过批量处理研究了新方法,以减小安全和发火系统的尺寸并降低其成本,同时提高其安全性和可靠性。与此同时,纳米铝热剂材料在微纳技术方面的进展使得一种关键技术组件得以生产:烟火微系统(pyroMEMS)。该组件仅由带有薄铝热剂层作为点火装药的微型电起爆器组成。这种从微尺度到毫米尺度可寻址的pyroMEMS能够将智能集成到厘米级烟火系统中。为说明这一技术发展,我们在此展示一种智能红外(IR)电子可控照明弹的开发,它由三个不同组件组成:(1)一个可控烟火弹射组件,包括三个可独立寻址的小型推进器,全部集成到一个一体成型且相互连接的装置中;(2)一个终端功能组件,包括一个结构化红外烟火条以及一个集成了低能量可寻址pyroMEMS的微起爆阶段;(3)一个相连的、自主的、符合STANAG 4187标准的电子传感器解除保险和发火组件。