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Compatibility of Niobium Alloys and Superalloys in a Flowing He-Xe Power Conversion System

机译:流动的He-Xe功率转换系统中铌合金和高温合金的兼容性

摘要

Proposed concepts for an ambitious mission to explore Jupiter's three icy moons place significant demands on the various spacecraft systems. There are many challenges related to the high output power conversion systems being considered, and one example is the need to ensure system compatibility at all levels. The utilization of appropriate materials for component structures is important to ensuring long mission life. Refractory metal alloys have attractive high-temperature properties in inert environments, but these alloys are sometimes susceptible to contamination. Potential material compatibility issues exist between refractory metal candidates and more conventional alloys. Nb-1Zr has long been considered one of the most well characterized refractory alloys that is well suited for elevated-temperature use and liquid-metal compatibility. However, previous studies have suggested that niobium alloys can not co-exist in a closed system with traditional stainless steels or superalloys due to transport of contaminants. The relevance of this information to a proposed power conversion system is discussed. Also, experiments and fundamental calculations are being performed to determine contamination transport from candidate superalloys to Nb-1Zr in a closed system with an inert carrier gas. Potential protective schemes are explored to ensure system level compatibility between the refractory alloy Nb-1Zr and a nickel-based superalloy.
机译:雄心勃勃的探索木星的三个冰冷卫星的拟议概念对各种航天器系统提出了重大要求。与高输出功率转换系统有关的挑战很多,其中一个例子就是需要确保所有级别的系统兼容性。为组件结构使用适当的材料对于确保较长的任务寿命很重要。难熔金属合金在惰性环境中具有吸引人的高温性能,但这些合金有时易受污染。耐火金属候选材料与更常规的合金之间存在潜在的材料相容性问题。长期以来,Nb-1Zr被认为是表征最充分的耐火合金之一,非常适合高温使用和液态金属相容性。但是,以前的研究表明,由于污染物的迁移,铌合金不能与传统的不锈钢或高温合金共存于封闭系统中。讨论了此信息与建议的电源转换系统的相关性。另外,还进行了实验和基本计算,以确定在带有惰性载气的密闭系统中污染物从候选高温合金向Nb-1Zr的迁移。探索了潜在的保护方案,以确保耐火合金Nb-1Zr与镍基高温合金之间的系统级兼容性。

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