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    • 6. 发明授权
    • Cooling system
    • 冷却系统
    • US5575155A
    • 1996-11-19
    • US516364
    • 1995-08-17
    • Hideo MitaKatsunobu KandaHideo MisawaToshiki HeraiKen Nagashima
    • Hideo MitaKatsunobu KandaHideo MisawaToshiki HeraiKen Nagashima
    • F25B9/00F25B9/10F25B9/14
    • F25B9/14F25B9/10
    • A cooling system includes a cold-accumulating refrigerator, and a cooling circuit. The cold-accumulating refrigerator includes a regenerator. The cooling circuit includes a main circuit, and a branched circuit. The main circuit includes a counterflow heat exchanger. The branched circuit is branched from an upstream portion of the main circuit, and joined to a downstream portion thereof, thereby reducing one of the flows of a refrigerant, flowing in a high-pressure-side passage and a low-pressure-side passage which are disposed in the counterflow heat exchanger, with respect to the other one of the flows. Moreover, the branched circuit includes a heat exchanger, and the heat exchanger is thermally brought into contact with a portion of the regenerator whose temperature is varied from a high temperature to a low temperature by another refrigerant flowing therein. Thus, the cooling efficiency of the cooling system is remarkably improved synergetically by the cooling resulting from the flow-difference in the counterflow heat exchanger, and by the extra cooling stemming from the thermal-contact at the regenerator.
    • 冷却系统包括冷藏式冷藏库和冷却回路。 蓄冷式冷冻机包括再生器。 冷却回路包括主电路和分支电路。 主回路包括逆流热交换器。 分支电路从主电路的上游部分分支,并与其下游部分接合,从而减少在高压侧通道和低压侧通路中流动的制冷剂流中的一个, 相对于另一个流量设置在逆流热交换器中。 此外,分支回路包括热交换器,并且热交换器与另一制冷剂在其中流动的温度从高温到低温的一部分再生器热接触。 因此,通过由逆流热交换器的流量差引起的冷却以及来自再生器的热接触的额外的冷却,协同地降低了冷却系统的冷却效率。
    • 7. 发明授权
    • Magnetizing method for producing coupled body comprised of multi-pole bulk superconducting magnets with respective polarities varying
    • 用于制造具有各极性变化的多极体超导磁体的耦合体的磁化方法
    • US06313725B1
    • 2001-11-06
    • US09668617
    • 2000-09-22
    • Ken NagashimaMasato MurakamiTakeshi MiyamotoAtsuyuki KobayashiOsami Tsukamoto
    • Ken NagashimaMasato MurakamiTakeshi MiyamotoAtsuyuki KobayashiOsami Tsukamoto
    • H01F700
    • H01F6/006
    • The invention is to establish means of producing easily and at low cost “a coupled body of superconducting magnets”, comprised of multi-pole bulk superconducting magnets lined up such that the polarities thereof alternately vary so as to cause a magnetic field gradient to occur. The magnetizing method for producing a coupled body comprised of multi-pole bulk superconducting magnets with respective polarities varying comprises the steps of coupling adjacent members for bulk superconducting magnets of a plurality of members for bulk superconducting magnets with each other in such a way as to be freely superposable, foldable, and unfoldable, superposing all the members for the bulk superconducting magnets on top of one after another, and applying a magnetizing process thereto in as superposed state, and unfolding alternately and juxtaposing the respective bulk superconducting magnets as superposed after the magnetizing process as shown in FIG. 1(A) to FIG. 1(D).
    • 本发明是建立容易且低成本地制造“超导磁体的耦合体”的方法,其包括排列成多极本体超导磁体的极性,使得其极性交替变化,从而产生磁场梯度。 用于制造由具有各自极性变化的多极体超导磁体组成的耦合体的磁化方法包括以下步骤:将多个用于块状超导磁体的多个构件的体超导磁体的相邻构件彼此连接, 自由地叠置,可折叠和不可折叠的,将大体积超导磁体的所有构件重叠在一个接一个的顶部,并且作为叠加状态施加磁化处理,并且在磁化之后交替地并置叠置的大块超导磁体 过程如图1所示。 图1(A)〜 1(D)。