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    • 2. 发明公开
    • An adiabatic apparatus
    • Ein adiabatischesGerät
    • EP0860668A2
    • 1998-08-26
    • EP98301066.1
    • 1998-02-13
    • KABUSHIKI KAISHA TOSHIBA
    • Kuriyama, ToruTakahashi, MasahikoChandratilleke, RohanaOhtani, YasumiNakagome, Hideki
    • F25D3/10
    • F25D19/006H01F6/04
    • In the adiabatic apparatus of the present invention, a vessel includes an adiabatic layer in which an object is taken. A plurality of thermal shield plates are located in the adiabatic layer. Each thermal shield plate concentrically surrounds the object. A temperature control section cools or heats the object and the plurality of thermal shield plates. A switch section thermally connects the temperature control section to the plurality of thermal shield plates and the object if temperature of the plurality of thermal shield plates and the object is controlled, and thermally separates the temperature control section from the plurality of thermal shield plates and the object if control of the temperature of the plurality of thermal shield plates and the object is completed.
    • 在本发明的绝热装置中,容器包括绝热层,在该绝热层中取出物体。 多个热屏蔽板位于绝热层中。 每个热屏蔽板同心地围绕物体。 温度控制部冷却或加热物体和多个热屏蔽板。 如果控制多个热屏蔽板和物体的温度,则开关部分将温度控制部分热连接到多个热屏蔽板和物体,并且将温度控制部分与多个热屏蔽板和 如果多个热屏蔽板和物体的温度的控制完成,则对象物。
    • 6. 发明公开
    • Cryogenic cooling apparatus and cryogenic cooling method for cooling object to very low temperatures
    • 用于冷却的目的是非常低的温度的低温冷却设备和方法
    • EP0797059A2
    • 1997-09-24
    • EP97301830.2
    • 1997-03-18
    • KABUSHIKI KAISHA TOSHIBA
    • Takahashi, MasahikoOhtani, YasumiChandratilleke, RohanaHatakeyama, HideoNakagome, HidekiKuriyama, Toru
    • F25D19/00H01F6/04F17C13/00
    • F25D19/006H01F6/04
    • A coil unit (41) and a refrigeration unit (42) are positioned such that a second heat conductive member (55) disposed on an extendible wall (54) of a vacuum container (43) and a fourth heat conductive member (74) disposed on an extendible wall (73) of another vacuum container (60) face each other coaxially. In this state, the coil unit (41) and refrigeration unit (42) are relatively moved to approach each other, and thus the second heat conductive member (55) and fourth heat conductive member (74) come in contact. If the coil unit (41) and refrigeration unit (42) are further moved, the extendible wall (54) extends and consequently the second heat conductive member (55) comes in contact with a first heat conductive member (49). In addition, the extendible wall (73) contracts and consequently the fourth heat conductive member (74) comes in contact with a third heat conductive member (62). Thus, a superconducting coil (44) is thermally connected to the refrigeration unit (42) so that the superconducting coil is cooled.
    • 线圈单元(41)和一个制冷单元(42)被定位测试做在一个真空容器(43)和第四热传导部件(74)的可延伸壁(54)设置在第二热传导部件(55),其设置 上在另一个真空容器(60)的可延伸壁(73)彼此面对同轴。 在这种状态下,线圈单元(41)和制冷单元(42)相对地移动接近海誓山盟,因此第二热传导部件(55)和第四热传导部件(74)发生接触。 如果线圈单元(41)和制冷单元(42)被进一步移动时,可延伸壁(54)延伸,并且因此第二热传导部件(55)开始与第一导热构件(49)接触。 另外,可伸长壁(73)的合同,因此第四热传导部件(74)开始与第三热传导部件(62)接触。 因此,超导线圈(44)热连接到所述制冷单元(42),从而没有超导线圈被冷却。