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    • 1. 发明专利
    • Superconductive coil
    • 超导线圈
    • JPS5732608A
    • 1982-02-22
    • JP10739980
    • 1980-08-05
    • Japan Atom Energy Res InstMitsubishi Electric Corp
    • SHIMAMOTO SUSUMUANDOU TOSHINARITADA EISUKESATOU TAKASHIHATSUTORI YASUHIDE
    • H01F6/06
    • H01F6/06
    • PURPOSE:To facilitate the fabrication of a superconductive coil as well as to improve its performance by a method wherein a first fine groove in a pancake cooling surface is fitted during the superconductive wire fabrication process, and then a second fine groove is provided after the pancake coil is formed and spacers and adhered in position. CONSTITUTION:When fabricating a superconductive wire 1, the first fine groove 71 which has a V-shaped section is provided along the wire. The superconductive wire 1 which is fitted with the line direction fine groove 71 is wound with insertion of insulators 5 between turns to form a pancake coil 2. Afterwards, insulation spacers 4 are adhered in fixed locations of the pancake coil 2, and then the second fine grooves are radially provided on the pancake coil 2 so as to intersect the fine groove 71.
    • 目的:为了促进超导线圈的制造以及通过一种方法来提高其性能,其中在超导丝制造过程中,在煎饼冷却表面中的第一细槽被装配,然后在薄饼之后提供第二细槽 线圈被形成并且间隔件并且粘附到位。 构成:在制造超导线1时,沿导线设置有具有V形截面的第一细槽71。 装配有线方向细槽71的超导线1在匝之间插入绝缘体5以形成扁平线圈2.然后,绝缘间隔件4粘附在扁平线圈2的固定位置,然后第二 在薄板线圈2上径向地设有微细沟槽,以与细槽71相交。
    • 4. 发明专利
    • Cryogenic temperature refrigerant supply device
    • 低温制冷剂供应装置
    • JPS58184774A
    • 1983-10-28
    • JP20687081
    • 1981-12-23
    • Japan Atom Energy Res InstToshiba Corp
    • TADA EISUKEHIYAMA TADAOKATOU TAKASHISHIMAMOTO SUSUMUMIURA AKIHIKO
    • F25D3/10F17C13/00H01L39/04
    • F17C13/00F17C2203/03F17C2221/017F17C2223/0161F17C2265/015
    • PURPOSE:To increase the separation efficiency of the titled device by a method wherein an injection tube, having a number of small holes on the outer circumference, and liquid drop separator surrounding the outer circumference are provided at the end part of a refrigerant supply tube, the jet flow of mist of the injection pipe is exhausted from the lower outlet and gas is discharged from the upper aperture. CONSTITUTION:The injection pipe 7 having a number of small holes 8 in the circumferential direction is fixed at the end part of the refrigerant supply tube 2, and a tube- shaped liquid-drop separator 9 surrounding the outer circumference of the injection tube 7 is provided. The liquid refrigerant 10 gathered at the bottom of the liquid-drop separator 9 is exhausted from an outlet 11, and a gas is discharged from the upper aperture 12. The liquid-drop separator 9 is joined together with jetting port 7 by welding or soldering using stainless steel, copper, aluminum or the like. Through these procedures, the mixed flow coming from a refrigeration liquefying machine is introduced into the injection pipe 7 from the refrigerant supply tube, jetted out from the small holes 8, collided by the inertia against the wall surface of the liquid-drop separator 9, and the mist is turned into liquid drops and drops downward. On the other hand, the gas is exhausted upward, thereby enabling to separate the mist in excellent efficiency.
    • 目的:为了提高标称装置的分离效率,其中在制冷剂供给管的端部设置有在外周具有多个小孔的注射管和围绕外周的液滴分离器的方法, 喷射管的喷雾流从下部出口排出,气体从上部孔排出。 构成:在制冷剂供给管2的端部固定有在周向上具有多个小孔8的注入管7,围绕注射管7的外周的管状液滴分离器9是 提供。 聚集在液滴分离器9的底部的液体制冷剂10从出口11排出,气体从上部孔12排出。液滴分离器9通过焊接或焊接与喷射口7接合 使用不锈钢,铜,铝等。 通过这些工序,来自制冷液化机的混合流从制冷剂供给管被从喷射管7喷出,从小孔8喷射,与液滴分离器9的壁面相反, 雾气变成液滴并向下滴落。 另一方面,气体向上排出,从而能够以极好的效率分离雾。
    • 5. 发明专利
    • Supercryogenic device
    • 超先行器件
    • JPS5735385A
    • 1982-02-25
    • JP9059780
    • 1980-07-04
    • Hitachi LtdJapan Atom Energy Res Inst
    • SHIMAMOTO SUSUMUTADA EISUKEHAGIWARA KOUJIIMURA HIROYA
    • H01F6/00F17C13/08H01L39/04
    • F17C13/086F17C2205/018F17C2209/228F17C2223/0161
    • PURPOSE:To prevent generation of stress mutually between respective apparatus of a supercryogenic device by a method wherein a base to support a supercryogenic vessel is fixedly supported at one place on a frame, other bases for respective apparatus are slidingly supported, and the slidingly supported parts are arranged at the positions equally distant from the fixedly supported part. CONSTITUTION:The fixedly supporting member 5a provided at the center point G fixes the base 3 and the frame 7 for vacuum vessel with clamping parts 10, and is fitted by spigot joint as not to generate discrepancy of mutual position. While the plural slidingly supporting parts provided at the equal distance from the point G are respectively constituted of a slidingly supporting member 5b, antifriction materials 8, clamping parts 10, and spacers 9 to prevent over-clamping by the clamping parts 10, and when the base 3 shrinks toward the direction of the fixedly supporting member 5a, the slidingly supporting parts slide with sliding faces a.
    • 目的:为了防止在超高温装置的各个装置之间产生应力,其中支撑超低温容器的基座被固定地支撑在框架的一个位置,各个装置的其它基座被滑动地支撑,并且滑动支撑部分 被布置在与固定支撑部分相等的位置处。 构成:设置在中心点G处的固定支撑构件5a将具有夹紧部10的基座3和真空容器用框架7固定,并且通过插口接合而不会产生相互位置的差异。 虽然设置在与点G相等距离的多个滑动支撑部分分别由滑动支撑部件5b,减摩材料8,夹紧部件10和间隔件9构成,以防止夹紧部件10过度夹紧, 底座3朝着固定支撑构件5a的方向收缩,滑动支撑部分滑动面a。