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    • 3. 发明授权
    • Cryogenic cooling apparatus and cryogenic cooling method for cooling
object to very low temperatures
    • 低温冷却装置和冷却对象的极低温冷却方法
    • US5737927A
    • 1998-04-14
    • US816737
    • 1997-03-14
    • Masahiko TakahashiYasumi OhtaniRohana ChandratillekeHideo HatakeyamaHideki NakagomeToru Kuriyama
    • Masahiko TakahashiYasumi OhtaniRohana ChandratillekeHideo HatakeyamaHideki NakagomeToru Kuriyama
    • F17C13/00F25D19/00H01F6/04F25B19/00
    • F25D19/006H01F6/04
    • A cryogenic cooling apparatus is provided, wherein the degree of freedom of installation and use is increased without deteriorating the reliability or stability and the range of uses of the apparatus is also increased. A coil unit and a refrigeration unit are positioned such that a second heat conductive member disposed on an extendible wall of a vacuum container and a fourth heat conductive member disposed on an extendible wall of another vacuum container face each other coaxially. In this state, the coil unit and refrigeration unit are relatively moved to approach each other, and thus the second heat conductive member and fourth heat conductive member come in contact. If the coil unit and refrigeration unit are further moved, the extendible wall extends and consequently the second heat conductive member comes in contact with a first heat conductive member. In addition, the extendible wall contracts and consequently the fourth heat conductive member comes in contact with a third heat conductive member. Thus, a superconducting coil is thermally connected to the refrigeration unit so that the superconducting coil is cooled.
    • 提供了一种低温冷却装置,其中提高了安装和使用的自由度,而不会降低可靠性或稳定性,并且装置的使用范围也增加。 线圈单元和制冷单元被定位成使得设置在真空容器的可延伸壁上的第二导热构件和设置在另一真空容器的可延伸壁上的第四导热构件同时面对。 在这种状态下,线圈单元和制冷单元相对移动以彼此靠近,因此第二导热构件和第四导热构件接触。 如果线圈单元和制冷单元进一步移动,则可延伸壁延伸并且因此第二导热构件与第一导热构件接触。 此外,伸缩壁收缩,从而第四导热构件与第三导热构件接触。 因此,超导线圈被热连接到制冷单元,使得超导线圈被冷却。
    • 5. 发明授权
    • Self-contained cooling apparatus for achieving cyrogenic temperatures
    • 用于实现低温的独立冷却装置
    • US5842348A
    • 1998-12-01
    • US835430
    • 1997-04-09
    • Tomomi KanekoRohana ChandratillekeToru Kuriyama
    • Tomomi KanekoRohana ChandratillekeToru Kuriyama
    • F25B9/00F17C13/00F25D19/00F25B19/00
    • F25D19/006H01F6/04
    • A cryogenic cooling apparatus including a vacuum container for containing an object to be cooled, at least one refrigerator for cooling the object, and a thermal switch unit. The refrigerator has a high-temperature cooling stage and a low-temperature cooling stage connected to the high-temperature cooling stage via a low-temperature cylinder. The thermal switch unit has at least one high-temperature heat transfer member attached to the high-temperature cooling stage, at least one low-temperature heat transfer member attached to the low-temperature cooling stage and separated from the high-temperature heat transfer member, and a sealed container provided between the high-temperature cooling stage and the low-temperature cooling stage. The sealed container contains the low-temperature and high-temperature heat transfer members, and a substance capable of existing as a gas or as a solid, heat conduction between the high-temperature heat transfer member and the low-temperature heat transfer member occurring via the substance when the substance is a gas. The sealed container has no communication with outside the sealed container during an operation of the thermal switch unit.
    • 一种低温冷却装置,包括用于容纳被冷却物体的真空容器,至少一个用于冷却物体的冰箱和一个热交换器单元。 冰箱具有通过低温气缸连接到高温冷却级的高温冷却级和低温冷却级。 热开关单元具有至少一个附接到高温冷却级的高温传热构件,至少一个低温传热构件,其附接到低温冷却级并与高温传热构件分离 以及设置在高温冷却段和低温冷却阶段之间的密封容器。 密封容器包含低温高温传热构件和能够作为气体存在或作为固体存在的物质,高温传热构件和低温传热构件之间的热传导通过 当物质是气体时的物质。 密封容器在热开关单元的操作期间与密封容器的外部没有通信。