含能金属桥能量交换模型及原理研究进展

IF 3.6
Yun Shen , Jianbing Xu , Yinghua Ye
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引用次数: 0

摘要

起爆装置是武器系统的一次能量和驱动力,它可以被某种形式的外部能量(机械、热或电)激发,产生燃烧和爆炸等化学反应。随着微机电系统(MEMS)技术的发展,基于MEMS技术的起爆装置成为近年来的研究热点。高能金属桥是基于MEMS技术的起爆装置的关键部件,MEMS技术将反应性多层膜(RMFs)与金属桥集成在一起,实现能量放大。本文从金属桥的类型、结构、制备方法和反应机理等方面综述了金属桥和含能金属桥的最新研究进展。主要介绍了基于两种反应性多层膜的含能金属桥的应用。本文研究了不同激励条件下各类含能金属桥的能量转换模型和原理。分析结果为不同点火条件下含能金属桥的设计与优化提供了理论依据和技术支持。最后,对含能金属桥梁的发展趋势进行了展望和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Research progress on energy exchange models and principles of energetic metallic bridges

Research progress on energy exchange models and principles of energetic metallic bridges
Initiating explosive devices are the primary energy and driving force of a weapon system, which can be excited by some form of external energy (mechanical, thermal or electrical) to produce chemical reactions such as combustion and explosion. With the development of micro-electro-mechanical system (MEMS) technology, initiating explosive devices based on MEMS technology have become a research hotspot in recent years. The energetic metallic bridge is a critical component in initiating explosive device based on MEMS technology, where MEMS technology integrates reactive multilayer films (RMFs) with metallic bridges to achieve energy amplification. In this review, the latest progress of metallic bridges and energetic metallic bridges is summarized from the aspects of types of metallic bridges, structures, preparation methods and reaction mechanism. The application of energetic metallic bridges based on two types of reactive multilayer films is mainly introduced. This article investigates the energy conversion models and principles governing various types of energetic metallic bridges under diverse excitation conditions. The analysis provides a theoretical foundation and technical support for the design and optimization of energetic metallic bridges across different ignition conditions. At the end of the review, an outlook and discussion on the development trends of energetic metallic bridges are presented.
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