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首页> 外文期刊>Sensors and Actuators, A. Physical >Metal-interlayer-metal structured initiator containing Al/CuO reactive multilayer films that exhibits improved ignition properties
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Metal-interlayer-metal structured initiator containing Al/CuO reactive multilayer films that exhibits improved ignition properties

机译:含有Al / CuO反应性多层膜的金属层间 - 金属结构引发剂,其表现出改善的点火性能

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Aluminum/cupric oxide (Al/CuO) reactive multilayer films (RMFs) are widely used for micro-chip energetic initiator applications; however, there are only a few examples where they are initiated through the direct input of electrical energy. This study describes the preparation of micro-chip energetic initiators containing Al/CuO RMFs as an interlayer between two Al electrical contact pads that are prepared using an image reversal lift-off process and the magnetron sputtering technology. This design enables the direct transfer of current from the contact pads to Al/CuO RMFs, which results in fast ignition (less than 1.0 mu s) and produces luminous flame ball that spread over a wide area (maximum flame area of 13.8 mm(2)). A metal-interlayer-metal (MIM) structured initiator will not be fired until the external voltage has exceeded the breakdown field strength of CuO layers. These initiators achieved a critical breakdown voltage (V-B) of 32-50 V and a complete electrical-explosion voltage (V-C) of 72-84 V. The ignition threshold rises with increasing the bilayer thicknesses of the RMFs. These characteristics of this specially structured initiator are well suited for applications in highly efficient and insensitive initiating explosive devices. (C) 2019 Elsevier B.V. All rights reserved.
机译:铝/铜氧化铝(Al / CuO)反应性多层膜(RMF)广泛用于微芯片能量引发剂应用;然而,只有几个例子通过电能的直接输入启动它们。本研究描述了在使用图像反转剥离过程和磁控溅射技术的两个Al电接触垫之间的层间,其制备含有Al / Cuo RMF的微芯片能量引发剂。该设计能够直接从接触垫直接转移到Al / CuO RMFS,这导致快速点火(小于1.0米)并产生散布在宽面积(最大火焰面积为13.8mm的发光火焰球(2 )))。在外部电压超过CUO层的击穿场强度之前,不会烧制金属层间 - 金属(MIM)结构引发剂。这些引发器实现了32-50V的临界击穿电压(V-B),以及72-84V的完整电爆炸电压(V-C)。随着RMF的双层厚度增加,点火阈值升高。这些特殊结构引发剂的这些特性非常适合在高效和不敏感的发起爆炸装置中的应用。 (c)2019 Elsevier B.v.保留所有权利。

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