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EXPERIMENTS WITH LINEAR COMPRESSORS FOR PHASE SHIFTING IN PULSE TUBE CRYCOOLERS

机译:用线性压缩机进行脉冲管冷冻机移位的线性压缩机

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For the past year NIST has been investigating the use of mechanical phase shifters as warm expanders for pulse tube cryocoolers. Unlike inertance tubes, which have a limited phase shifting ability at low acoustic powers, mechanical phase shifters have the ability to provide nearly any phase angle between the mass flow and the pressure. We discuss our results with experiments and modeling on a commercially available miniature linear compressor operating as an expander on the warm-end of a 4 K pulse tube, whose temperature is nominally about 35 K. We also present results on experiments with a linear compressor operating at room temperature but coupled to the 4 K stage through secondary regenerators and secondary pulse tubes. Experiments on a small pulse tube test apparatus with both ~4He and ~3He showed improved efficiency when using the mechanical expander over that of inertance tubes. Phase locking techniques using function generators and power amplifiers for control of phase angle are detailed. The use of expanders demonstrates flexible control in optimizing phase angles for improved cryocooler performance.
机译:对于过去的一年,NISS一直在调查机械相移器作为脉冲管冷冻机的温暖扩张器的使用。与在低声功率下具有有限相移能的惯性管不同,机械相移器具有在质量流量和压力之间提供几乎任何相角的能力。我们将结果与在4 k脉冲管的膨胀机上的市售微型线性压缩机上进行了实验和建模,其温度标称为约35k。我们还通过线性压缩机运行的实验结果在室温下,通过二次再生器和二次脉冲管耦合到4K级。在〜4He和〜3HE中使用机械膨胀器的小脉冲管试验装置的实验显示在惯性管上使用机械膨胀器时的提高。详细介绍了使用功能发生器和功率放大器进行控制的相位锁定技术。扩展器的使用在优化相位角度方面展示了灵活的控制,以改善低温冷却器性能。

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