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Ultimately Reliable Pyrotechnic Systems

机译:最终可靠的烟火系统

摘要

This paper presents the methods by which NASA has designed, built, tested, and certified pyrotechnic devices for high reliability operation in extreme environments and illustrates the potential applications in the oil and gas industry. NASA's extremely successful application of pyrotechnics is built upon documented procedures and test methods that have been maintained and developed since the Apollo Program. Standards are managed and rigorously enforced for performance margins, redundancy, lot sampling, and personnel safety. The pyrotechnics utilized in spacecraft include such devices as small initiators and detonators with the power of a shotgun shell, detonating cord systems for explosive energy transfer across many feet, precision linear shaped charges for breaking structural membranes, and booster charges to actuate valves and pistons. NASA's pyrotechnics program is one of the more successful in the history of Human Spaceflight. No pyrotechnic device developed in accordance with NASA's Human Spaceflight standards has ever failed in flight use. NASA's pyrotechnic initiators work reliably in temperatures as low as -420 F. Each of the 135 Space Shuttle flights fired 102 of these initiators, some setting off multiple pyrotechnic devices, with never a failure. The recent landing on Mars of the Opportunity rover fired 174 of NASA's pyrotechnic initiators to complete the famous '7 minutes of terror.' Even after traveling through extreme radiation and thermal environments on the way to Mars, every one of them worked. These initiators have fired on the surface of Titan. NASA's design controls, procedures, and processes produce the most reliable pyrotechnics in the world. Application of pyrotechnics designed and procured in this manner could enable the energy industry's emergency equipment, such as shutoff valves and deep-sea blowout preventers, to be left in place for years in extreme environments and still be relied upon to function when needed, thus greatly enhancing safety and operational availability.
机译:本文介绍了NASA设计,制造,测试和认证的烟火设备的方法,这些设备可在极端环境下实现高可靠性运行,并说明了在石油和天然气行业中的潜在应用。 NASA在烟火技术方面极为成功的应用建立在自阿波罗计划以来一直保持和发展的文件化程序和测试方法的基础上。对标准进行管理并严格执行,以确保性能,冗余,批次抽样和人员安全。航天器中使用的烟火技术包括具有initiator弹枪弹力的小型起爆器和雷管,用于跨越多英尺的爆炸能量传递的导爆索系统,用于破坏结构膜的精密线性装药以及用于致动阀和活塞的助推药。 NASA的烟火计划是人类航天史上最成功的计划之一。根据NASA的Human Spaceflight标准开发的烟火设备从未在飞行中失败过。 NASA的烟火引发剂可在-420 F的低温下可靠地工作。135次航天飞机飞行中的每一次都发射了102种此类引爆剂,其中一些引爆了多个烟火装置,从未发生故障。最近在机会号火星上着陆时,有174名NASA的烟火引发剂被发射,以完成著名的“ 7分钟恐怖”。即使在前往火星的途中经过了极端的辐射和热环境之后,它们中的每一个仍然起作用。这些引发剂已经在泰坦表面上发射。 NASA的设计控制,程序和过程产生了世界上最可靠的烟火。以这种方式设计和采购的烟火技术的应用可以使能源行业的应急设备(例如截止阀和深海防喷器)在极端环境中放置数年,并在需要时仍可依靠其发挥作用,因此在很大程度上增强安全性和运营可用性。

著录项

  • 作者

    Hinkel Todd; Scott John H.;

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  • 年度 2015
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