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    • 52. 发明专利
    • SUPERCONDUCTIVE COIL
    • JPS57180106A
    • 1982-11-06
    • JP6418081
    • 1981-04-30
    • JAPAN ATOMIC ENERGY RES INSTHITACHI LTD
    • SHIMAMOTO SUSUMUTSUJI HIROSHIKAMISHITA ISAMU
    • H01F6/04G21B1/11H01F6/06H01L39/00
    • PURPOSE:To avoid the generation of quenching of, for instance, a superconductive coil for a nuclear fusion experiment equipment by a method wherein the earth insulation on the surface to the winding side of a support is made of textile reinforced insulation layer which is semi-hardened before supporting insulation spacers and formes guide grooves when it is hardened. CONSTITUTION:Semi-hardened textile reinforced material is pasted on the surface of a frame support 1a to the side of which the winding is provided. Then the winding 2 is fitted and insulation spacers 3 are struck into a gap between the winding 2 and the support 1a. After that the whole composition is heated and dried and the textile reinforced insulation layer 9 is formed. At that time the spacers 3 are tightly adhered and fixed to the insulation layer 9 via guide grooves 7. Thus only the parts of the insulation layer 9 which are compressed by the spacers are made recesses and the resin with which the semi-hardened textile reinforced material is impregnated performs also as adhesive, so that the spacers are made adhered to one body with the insulation layer 9. Accordingly, the generation of quenching is avoided.
    • 57. 发明专利
    • PENETRATING PART STRUCTURE OF SOUND INSULATING WALL
    • JPH10321440A
    • 1998-12-04
    • JP12556897
    • 1997-05-15
    • MITSUBISHI ELECTRIC CORP
    • TSUJI HIROSHI
    • H01F27/02H01F27/04H01F30/00
    • PROBLEM TO BE SOLVED: To constitute a penetrating part of a sound insulating wall, connected to an exterior accessory of a low noise type electromagnetic induction device, so as to obtain sound insulating effect and waterproof effect, with a small number of parts and at low cost. SOLUTION: A collar 32 which has an outer diameter larger than an end part flange and has an L-shaped cross section is provided in a connecting pipe 2a penetrating an opening part of a sound insulating wall, and a mounting seat 31 is provided in the surface around the opening part penetrating the connecting pipe 2a of the sound insulating wall, and a vibrationproof rubber 35, which is brought into contact with the outer diameter of a straight pipe part 32a of the collar 32 provided in the connecting pipe 2a, and whose outer diameter is fitted to the outer periphery of the mounting plate 31, is bonded, and the vibration proof rubber 35 is pressed with a presser plate 33, fixing with a fastening bolt 38, and waterproofing is performed for the straight pipe part of the connecting pipe 2a and an inner diameter part of the mounting plate 31 with a sealing material 39, and the fastening bolt 38 part is fastened with a seal washer 36 inserted. By constituting in this way, shut-off of vibration and waterproofing structure are enabled at low cost with a simple structure of the penetrating part.
    • 60. 发明专利
    • WINDING WIRE CLAMPING DEVICE OF STATIC INDUCTION EQUIPMENT
    • JPH09134828A
    • 1997-05-20
    • JP29259795
    • 1995-11-10
    • MITSUBISHI ELECTRIC CORP
    • TSUJI HIROSHIHOSHINO TAKASHIMITSUI FUMIYOSHI
    • H01F27/30
    • PROBLEM TO BE SOLVED: To enable a winding wire clamping device to be lessened in sectional area and enhanced in pressing force applied to a winding wire by a method wherein a winding wire clamping device is equipped with a spring, a clamping bolt, a guide bush, and a push metal, and the push metal is movably fitted in the guide bush to compress the spring, whereby a winding wire is clamped. SOLUTION: A case 10 is a hollow cylinder, wherein the hollow is composed of a first hollow 10a where disc springs 11 and spacers 12 are housed and a second threaded hollow 10b which is smaller in diameter than the first hollow 10a and where a clamping bolt 15 is screwed in. The disc springs 11 and the spacers 12 are put in the first hollow 10a, and a guide bush 13 is fitted in the lower end of the first hollow 10a so as to enable the stud 14b of a push metal 14 to penetrate through it in a slidable manner in an axial direction. The clamping bolt 15 is screwed in the second hollow 10b so as to compress the disc springs 11 through the intermediary of the spacers 12. The stud 14b of the push metal 14 is movably fitted in the guide bush 13 to compress the disc springs 11, and a winding wire 300 is clamped by the flange of the push metal 14.