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Nanoparticulate gellants for metallized gelled liquid hydrogen with aluminum

机译:与铝金属化的液态氢的纳米微粒胶凝剂

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摘要

Gelled liquid hydrogen was experimentally formulated using sol-gel technology. As a follow-on to work with cryogenic simulants, hydrogen was gelled with an alkoxide material: BTMSE. Initial results demonstrated that gellants with a specific surface area of 1000 m(exp 2)/g could be repeatably fabricated. Gelled hexane and metallized gelled hexane (with 13.8-wt% Al) were produced. Propellant settling testing was conducted for acceleration levels of 2 to 10 times normal gravity and a minimum gellant percentage was determined for stable gelled hexane and metalized gelled hexane. A cryogenic capillary rheometer was also designed, constructed, and used to determine the viscosity of gelled hydrogen. Small volumes of liquid hydrogen were gelled with a 7- to 8-wt% gellant level. The gelled H2 viscosity was 1.5 to 3.7 times that of liquid hydrogen: 0.048 to 0.116 mPa-s versus 0.03 mPa-s for liquid H2 (at 16 K and approximately 1 atm pressure).
机译:使用溶胶-凝胶技术通过实验配制了液态氢。作为处理低温模拟物的后续措施,氢气已与醇盐材料BTMSE凝胶化。初步结果表明,可以重复制备比表面积为1000 m(exp 2)/ g的胶凝剂。产生了胶凝己烷和金属化胶凝己烷(具有13.8重量%的Al)。进行推进剂沉降测试,其加速水平为正常重力的2至10倍,并确定了稳定胶凝己烷和金属化胶凝己烷的最小胶凝剂百分比。还设计,构造了低温毛细管流变仪,并用于测定凝胶化氢的粘度。少量液态氢以7至8 wt%的胶凝剂水平胶凝。胶凝的H2粘度是液态氢的1.5到3.7倍:0.048到0.116 mPa-s,而液态H2(在16 K和大约1 atm压力下)为0.03 mPa-s。

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