现代化机电设备的触发装置:设计与试验说明

M. Volkov
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引用次数: 0

摘要

目前,现代航天器使用的是对撞击敏感的高精度设备。在这方面,有必要为保持和释放可移动结构元件的机构创造无冲击触发装置。这些任务决定了在其设计中不包含烟火装置的机电触发装置的发展方向。随着新任务的出现,火箭和航天技术也不断出现质量尺寸特性的提高问题。然而,烟火元素迫使使用巨大的外壳和支架结构,可以承受压力的急剧增加和执行部分的影响。通用热保护剂的使用并不总是允许优化保留机制的设计。此外,使用烟火介质的缺点之一是增加了工作的风险。本文介绍了对触发装置设计现代化、提高其机械和电气特性的可能性的研究结果。采用计算和实验相结合的方法进行了研究,制作并发布了触发装置的实验样品。通过这项工作,开发了一种升级的触发装置,实现了更好的电气特性,降低了功耗(降低了响应时间),改善了质量尺寸特性,减少了结构件数量。
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Modernization of the electromechanical equipment the trigger device: description of the design and testing
At present, modern spacecraft use high-precision equipment that is sensitive to influence impacts. In this regard, there is a need to create shock-free trigger devices for mechanisms for holding and releasing movable structural elements. These tasks determined the vector of development of electromechanical trigger devices that do not contain pyrotechnic devices in their design. Along with the new tasks, there are constant problems of rocket and space technology – the improvement of mass-dimensional characteristics. However, pyrotechnic elements force the use of massive housings and brackets for structures that can withstand a sharp increase in pressure and the impact of the executive parts. The use of universal pyropatrons does not always allow optimizing the design of the retention mechanism. Also, one of the disadvantages of working with pyrotechnic media is the increased risk of working. The paper presents the results of a study of the possibility of modernizing the design of trigger devices, improving their mechanical and electrical characteristics. The research was carried out using calculated and experimental methods, and experimental samples of trigger devices were manufactured and released. As a result of the work, an upgraded trigger device was developed, better electrical characteristics were achieved, power consumption was reduced (the response time was reduced), mass-dimensional characteristics were improved, and the number of structural parts was reduced.
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来源期刊
自引率
0.00%
发文量
24
审稿时长
8 weeks
期刊最新文献
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