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Performance Enhancement of Linear Stirling Cryocoolers

机译:线性斯特林冷冻机的性能增强

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Performance and reliability parameters of the AIM Stirling coolers have been presented in several previous publications. This paper focuses on recent developments at AIM for the COP improvement of cryocoolers in IR-detectors and systems applications. Improved COP of cryocoolers is a key for optimized form factors, weight and reliability. In addition, some systems are critical for minimum input power and consequently minimum electromagnetic interference or magnetic stray fields, heat sinking or minimum stress under high g-level etc.. Although performance parameters and loss mechanism are well understood and can be calculated precisely, several losses still had been excessive and needed to be minimized. The AIM program is based on the SADA I cryocooler, which now is optimized to carry 4.3 W net heat load at 77K. As this program will lead into applications on a space platform, in a next step AIM is introducing flexure bearings and in a final step an advanced pulse tube cold head will be implemented. The performance of the SADA II cooler is also improved by using the same tools and methods than used for the performance increase of the SADA I cooler by a factor of two.. The main features are summarized together with measured or calculated performance data.
机译:目前的斯特林冷却器的性能和可靠性参数已在几个以前的出版物中提出。本文重点介绍了最近的发展,旨在为IR检测器和系统应用中的冷冻机提供COP改进。改进的冷冻剂COP是优化的外形,重量和可靠性的关键。此外,一些系统对于最小输入功率至关重要,因此最小电磁干扰或磁场场,高G级的散热或最小应力等。尽管性能参数和损耗机制很好地理解,并且可以精确地计算,几个亏损仍然过度,需要最小化。 AIM计划基于SADA I Drococooler,现在优化,以便在77K上携带4.3 W净热量负载。由于该程序将导致在空间平台上的应用,因此在下一步旨在引入弯曲轴承,并且在最后一步中将实现先进的脉冲管冷头。 SADA II冷却器的性能也通过使用相同的工具和方法来改进,而不是用于SADA I冷却器的性能增加到两倍的性能。主要特征总结在一起与测量或计算的性能数据一起。

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