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Stirling Technology Development at NASA GRC

机译:NASA GRC的斯特林技术开发

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The Department of Energy, Stirling Technology Company (STC), and NASA Glenn Research Center (GRC) are developing a free-piston Stirling convertor for a high-efficiency Stirling Radioisotope Generator (SRG) for NASA Space Science missions. The SRG is being developed for multimission use, including providing electric power for unmanned Mars rovers and deep space missions. NASA GRC is conducting an in-house technology project to assist in developing the convertor for space qualification and mission implementation. Recent testing of 55-We Technology Demonstration Convertors (TDC's) built by STC includes mapping of a second pair of TDC's, single TDC testing, and TDC electromagnetic interference and electromagnetic compatibility characterization on a non-magnetic test stand. Launch environment tests of a single TDC without its pressure vessel to better understand the convertor internal structural dynamics and of dual-opposed TDC's with several engineering mounting structures with different natural frequencies have recently been completed. A preliminary life assessment has been completed for the TDC heater head, and creep testing of the IN718 material to be used for the flight convertors is underway. Long-term magnet aging tests are continuing to characterize any potential aging in the strength or demagnetization resistance of the magnets used in the linear alternator (LA). Evaluations are now beginning on key organic materials used in the LA and piston/rod surface coatings. GRC is also conducting finite element analyses for the LA, in part to look at the demagnetization margin on the permanent magnets. The world's first known integrated test of a dynamic power system with electric propulsion was achieved at GRC when a Hall-effect thruster was successfully operated with a free-piston Stirling power source. Cleveland State University is developing a multi-dimensional Stirling computational fluid dynamics code to significantly improve Stirling loss predictions and assist in identifying convertor areas for further improvements. This paper will update the status and results for these efforts.
机译:能源部,斯特林技术公司(STC)和NASA格伦研究中心(GRC)正在开发一种用于高效率斯特林放射性同位素发生器(SRG)的无活塞斯特林转换器,用于NASA太空科学任务。 SRG正在开发中,可用于多用途,包括为无人火星探测器和深空任务提供电力。 NASA GRC正在开展一项内部技术项目,以协助开发用于空间鉴定和执行任务的转换器。 STC制造的55-We技术演示转换器(TDC)的最新测试包括映射第二对TDC,单个TDC测试以及在非磁性测试台上的TDC电磁干扰和电磁兼容性特性。为了更好地了解转换器的内部结构动力学,单个TDC的发射环境测试已经完成,带有多个具有不同固有频率的工程安装结构的双对置TDC的发射环境测试已经完成。 TDC加热器头的初步寿命评估已经完成,并且用于飞行转换器的IN718材料的蠕变测试正在进行中。长期的磁铁老化测试一直在表征线性交流发电机(LA)中使用的磁铁的强度或抗退磁能力是否存在潜在的老化。现在开始评估用于LA和活塞/活塞杆表面涂层的关键有机材料。 GRC还对洛杉矶进行了有限元分析,部分目的是查看永磁体的退磁裕度。 GRC通过使用自由活塞斯特林动力源成功运行霍尔效应推进器后,在GRC上实现了世界上第一个已知的带电动力系统的综合测试。克利夫兰州立大学正在开发多维斯特林计算流体动力学代码,以显着改善斯特林损失的预测并帮助识别转换器区域以进行进一步改进。本文将更新这些工作的状态和结果。

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