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A lightweight low-current 10 K magnet for space-flight ADRs

机译:用于航天ADR的轻量级低电流10 K磁体

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摘要

Future space missions will include detectors and other components cooled to cryogenic temperatures by adiabatic demagnetization refrigerators (ADRs) coupled with mechanical cryocoolers. In such systems the ADRs require lightweight, low-current superconducting magnets. At least one of an ADR's magnets must operate at the cryocooler's coldest stage temperature. This temperature should be as high as possible in order to improve operating efficiency and design flexibility. Until now all space-flight compatible magnets have been made with NbTi wire, which has limited their operating temperatures to below about 5 K. We have developed a lightweight (1 Kg) low-current (8 A) Nb_3Sn magnet which produces a 3 T central field at 10 K. We explain the choice of this magnet's specifications and describe its performance testing.
机译:未来的太空任务将包括通过绝热去磁制冷机(ADR)和机械低温冷却器冷却至低温的探测器和其他组件。在此类系统中,ADR需要轻巧的低电流超导磁体。 ADR的磁铁中至少有一个必须在低温冷却器的最冷阶段温度下运行。该温度应尽可能高,以提高工作效率和设计灵活性。到目前为止,所有与太空飞行兼容的磁体都是用NbTi线制成的,其工作温度限制在5 K以下。我们已经开发出了重量轻(1 Kg)的低电流(8 A)Nb_3Sn磁体,其产生的温度为3 T中心磁场在10K。我们解释了该磁体规格的选择并描述了其性能测试。

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