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Development of Filled-Skutterudite Based Thermopile for High Temperature Sensors for Space and Terrestrial Applications

机译:用于空间和地面应用的高温传感器的基于填充方钴矿的热电堆的开发

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The Thermal Energy Conversion Technologies Group at the Jet Propulsion Laboratory has been pursuing the development of thermopiles capable of higher temperature operation in support of terrestrial and space sensing applications in extreme environments. The next-generation sensor technology would rely on filled skutterudite (SKD) compounds, the same materials currently being considered for use in the enhanced Multi-Mission Radioisotope Thermoelectric Generator (eMMRTG). We report on the design, development and fabrication of SKD-based prototype thermopile devices. The beginning-of-life (BOL) experimental and predicted performance of the SKD-based prototype thermopile in terms of electrical resistance, output voltage, current, power output and efficiency in the 423 to 723 K operating temperature range is reported and discussed.
机译:喷气推进实验室的热能转换技术小组一直在追求能够在更高温度下运行的热电堆的开发,以支持极端环境中的地面和空间传感应用。下一代传感器技术将依靠填充方钴矿(SKD)化合物,目前正在考虑将这种材料用于增强型多用途放射性同位素热电发生器(eMMRTG)。我们报告基于SKD的原型热电堆设备的设计,开发和制造。报告并讨论了基于SKD的原型热电堆在423至723 K工作温度范围内的寿命开始(BOL)实验和预测性能,包括电阻,输出电压,电流,功率输出和效率。

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