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Vibration-heating in ADR Kevlar suspension systems

机译:ADR Kevlar悬架系统中的振动加热

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The cryogenics group at NASA's Goddard Space Flight Center has a long-standing development and test program for laboratory and space-flight adiabatic demagnetization refrigerators(ADRs).These devices are used to cool components to temperatures as low as 0.05 K.At such low temperatures the ADR systems can provide a few micro-Watts of cooling power,so it is important to minimize the conduction of heat to these cold stages from the surroundings.The cold ADR elements are held in place by thin tensioned strings made of Kevlar,chosen for its high strength and stiffness and low thermal conductivity.During laboratory testing,we have observed that occasional significant additional heat loads on the coldest ADR stages correlate with unusually high vibration levels in the cryostat due to a noisy mechanical cryocooler.We theorized that this heat results from plastic deformation of the Kevlar fibers and frictional interactions among them,driven by the cryostat vibrations.We describe tests and calculations performed in attempt to confirm this source of the heating.
机译:美国宇航局的戈达德太空飞行中心的低温集团对实验室和太空飞行绝热退磁冰箱(ADRS)具有长期发展和测试计划。这些装置用于将组件冷却至0.05k的温度低至0.05k。 ADR系统可以提供一些微型瓦片的冷却功率,因此重要的是通过从周围环境中最小化热量的传导。冷ADR元件通过由Kevlar制成的薄张紧的弦来保持在适当位置。它的高强度和刚度和低导热性。花卉检测,我们观察到,由于嘈杂的机械冷冻室,偶尔在最寒冷的ADR阶段上的大致额外的热负荷与低温恒温器中的异常高的振动水平相关。我们理论大化了这种热量从凯夫拉纤维的塑性变形和摩擦相互作用,由低温恒温器振动驱动。我们描述了测试和计算器在尝试确认这种加热来源时执行的狮子。

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