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Investigation of Insulation Materials for Future Radioisotope Power Systems (RPS)

机译:未来放射性同位素动力系统(RPS)的绝缘材料研究

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NASA's Radioisotope Power System (RPS) Technology Advancement Project is developing next generation high temperature insulation materials that directly benefit thermal management and improve performance of RPS for future science missions. Preliminary studies on the use of multilayer insulation (MLI) for Stirling converters used on the Advanced Stirling Radioisotope Generator (ASRG) have shown the potential benefits of MLI for space vacuum applications in reducing generator size and increasing specific power (W/kg) as compared to the baseline Microtherm HT (Microtherm, Inc.) insulation. Further studies are currently being conducted at NASA Glenn Research Center (GRC) on candidate MLI foils and aerogel composite spacers. This paper presents the method of testing of foils and spacers and experimental results to date.
机译:美国国家航空航天局(NASA)的放射性同位素动力系统(RPS)技术进步项目正在开发下一代高温绝缘材料,这些材料将直接有益于热管理并提高RPS的性能,以应对未来的科学任务。对高级斯特林放射性同位素发生器(ASRG)上使用的斯特林转换器使用多层绝缘(MLI)的初步研究表明,与空间真空应用相比,MLI在减小发生器尺寸和增加比功率(W / kg)方面具有潜在的优势。到基准Microtherm HT(Microtherm,Inc.)绝缘。 NASA格伦研究中心(GRC)目前正在对候选MLI箔和气凝胶复合垫片进行进一步研究。本文介绍了箔和垫片的测试方法以及迄今为止的实验结果。

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