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Characterization of the Hypergolic Ignition Delay of Ammonia Borane

机译:氨硼烷超高倍数点火延迟的表征

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Hypergolic hybrid motors have the potential to improve the safety, reliability, and versatility of rocket systems. They may also serve as a viable replacement for highly toxic liquid fuels (for example, hydrazine, monomethyl hydrazine, etcetera) conventionally used in hypergolic systems. Ammonia borane (AB)-based fuels are relatively nontoxic hydrogen-dense solids that have good theoretical performance. AB has also been found to be highly hypergolic with white fuming nitric acid (WFNA), potentially enabling it to replace existing toxic hypergolic fuels. In this work, hypergolic ignition delay tests were performed on AB synthesized with a novel water-promoted scalable process to characterize its performance as a hypergolic fuel. Typical ignition delays with WFNA were found here to be approximately 2-10 ms. Ignition delay tests performed with AB powder sieved into different particle size ranges indicated a particle size dependency for the ignition delay, with the finer AB particles (D 45 mu m) igniting after shorter delays. AB was successfully incorporated into Sylgard (R)-184, which is a silicone elastomer binder, and ignition delay tests were performed on high solids loading (80%) Sylgard-184-AB pellets. Mean ignition delays for the Sylgard-184-AB fuel pellets tested were less than 50 ms, which may make the formulation viable for use in hypergolic hybrid motors.
机译:超混合动力电动机具有改善火箭系统的安全性,可靠性和多功能性的潜力。它们还可以替代传统上用于高声系统的高毒性液体燃料(例如,肼,一甲基肼等)。氨硼烷(AB)基燃料是相对无毒的氢致密固体,具有良好的理论性能。还发现AB与白发烟硝酸(WFNA)具有高度的高原味,因此有可能使其替代现有的有毒高原味燃料。在这项工作中,对通过新颖的水促进可扩展工艺合成的AB进行了高定律点火延迟测试,以表征其作为高定律燃料的性能。此处发现使用WFNA的典型点火延迟约为2-10毫秒。用筛分为不同粒径范围的AB粉进行的点火延迟测试表明,点火延迟与粒径有关,较小的AB颗粒(D <45μm)在较短的延迟后便会着火。 AB成功地加入到有机硅弹性体粘合剂Sylgard(R)-184中,并在高固体含量(80%)Sylgard-184-AB颗粒上进行了点火延迟测试。测试的Sylgard-184-AB燃料芯块的平均点火延迟小于50毫秒,这可能使该配方适用于高混合动力汽车。

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