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Material Studies Related to the Use of NaK Heat Exchangers Coupled to Stirling Heater Heads

机译:与NaK换热器与斯特林加热头结合使用相关的材料研究

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NASA has been supporting design studies and technology development that could provide power to an outpost on the moon, Mars, or an asteroid. Technology development efforts have included fabrication and evaluation of components used in a Stirling engine power conversion system. Destructive material evaluation was performed on a NaK shell heat exchanger that was developed by the NASA Glenn Research Center and integrated with a commercial lkWe Stirling converter from Sunpower Incorporated. The NaK Stirling test demonstrated Stirling converter electrical power generation using a pumped liquid metal heat source under thermal conditions that represent the heat exchanger liquid metal loop in a Fission Power Systems (FPS) reactor. The converters were operated for a total test time of 66 hours at a maximum temperature of 823 K. After the test was completed and NaK removed, the heat exchanger assembly was sectioned to evaluate any material interactions with the flowing liquid metal. Several dissimilar-metal braze joint options, crucial for the heat exchanger transfer path, were also investigated. A comprehensive investigation was completed and lessons learned for future heat exchanger development efforts are discussed.
机译:NASA一直在支持设计研究和技术开发,这些技术可以为月球,火星或小行星的前哨基地提供动力。技术开发工作包括斯特林发动机动力转换系统中使用的组件的制造和评估。在由NASA格伦研究中心开发并与Sunpower Incorporated的商用lkWe斯特林转换器集成的NaK壳式热交换器上进行破坏性材料评估。 NaK斯特林测试表明,在代表裂变动力系统(FPS)反应堆中的热交换器液态金属回路的热条件下,使用泵送液态金属热源进行的斯特林转换器发电。在最高温度为823 K的条件下,转炉的总测试时间为66小时。测试完成并除去NaK后,将热交换器组件切开,以评估与流动的液态金属的任何材料相互作用。还研究了几种对于热交换器传递路径至关重要的异种金属钎焊接头选项。完成了全面的调查,并讨论了有关将来的热交换器开发工作的经验教训。

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