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Cryogenic infrared mission 'JAXA/SPICA' with advanced cryocoolers

机译:配备先进的低温冷却器的低温红外任务“ JAXA / SPICA”

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Since the next cryogenic infrared mission "JAXA/SPICA" employs advanced mechanical cryocoolers with effective radiant cooling in place of cryogen, the primary mirror, 3.5 m in diameter, and the optical bench can be maintained at 4.5 K for at least 5 years. First, the feasibility of the thermal design of the cryogenic system is presented. A 20 K-class Stirling cryocooler was then improved in cooling capacity and reliability for the mission, and the effects of contaminated working gas or new regenerator materials on cooling performance were investigated. Development of a new (~3)He-JT (Joule-Thomson) cryocooler for use at 1.7 K is also described, along with the successful results of a cooling capacity higher than the required 10 mW. A 4 K-class cryocooler was modified and developed for higher reliability over a five-year operational life and a higher cooling capacity exceeding the current 30 mW. Finally, we discuss a system for heat rejec-tion from cryocoolers using thermal control devices.
机译:自从下一个低温红外任务“ JAXA / SPICA”采用具有有效辐射冷却功能的先进机械低温冷却器代替制冷剂以来,直径3.5 m的主镜和光具座可以在4.5 K下保持至少5年。首先,介绍了低温系统热设计的可行性。然后,改进了20 K级斯特林制冷机的制冷能力和可靠性,并研究了受污染的工作气体或新型蓄热材料对制冷性能的影响。还介绍了一种新的(〜3)He-JT(焦耳-汤姆森)低温制冷器的开发,该制冷器可在1.7 K下使用,并成功地获得了高于所需10 mW的制冷能力。对4 K级低温冷却器进行了修改和开发,以在五年的使用寿命中具有更高的可靠性,并具有超过当前30 mW的更高制冷量。最后,我们讨论了使用热控制装置从冷冻机排出热量的系统。

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