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    • 1. 发明专利
    • HYDROGEN PELLET INJECTION DEVICE
    • JPH01110289A
    • 1989-04-26
    • JP26898687
    • 1987-10-24
    • KOBE STEEL LTD
    • SUGANO MASAHIRO
    • G21B1/05G21B1/00H05H1/00
    • PURPOSE:To successively inject a plurality of hydrogen pellets at narrow time lag by providing a slit between areas at which a pellet producing hole of a pellet carrying disc is formed. CONSTITUTION:Hydrogen pellets produced in a plurality of pellet producing holes 53 of a pellet carrying disc 3 are injected by rotating the disc 3 and opening a high speed electromagnetic value from an injecting high pressure gas introducing pipe which is not shown in the figure and a gunbarrel. Slits 35 which reach the periphery are radially formed on the pellet carrying disc 3 such as a stainless steel thin plate, and triangular areas and rotating arms 38 are formed. A pellet producing hole 53 are formed on the triangular areas and the cooling faces of a first and a second cryoheads are pressed into contact with the inside areas. Therefore, since the pellet carrying disc can effectively be cooled and the heat at the injecting time is not transferred to a next injecting hydrogen pellet, continuous injection can be performed.
    • 2. 发明专利
    • INSULATING RAW MATERIAL FOR ELECTROMAGNETIC ACCELERATING TUBE
    • JPH08148296A
    • 1996-06-07
    • JP29151594
    • 1994-11-25
    • KOBE STEEL LTD
    • SUGANO MASAHIRO
    • H05H1/54
    • PURPOSE: To improve acceleration efficiency with no compressive deformation of an insulating material, from which an insulated rail and an insulated member are produced to use for an electromagnetic accelerating tube, by using a non- conconductive material with high rigidity such as ceramics, etc., as a core material and coating the core material with a non-conductive material. CONSTITUTION: As to an insulated rail (a) produced by processing an insulating material for electromagnetic acceleration tubes; glass fibers are coiled on the outer face of a ceramic (Al2 O3 ) core material 1 by filament winding method, and after that the resulting body is fixed by epoxy resin to give an insulating material 3, and then the insulated rail 4a is produced from the insulating material 3. A rail (b) can be produced in the same way, that is, processing with glass fiber on the outer face of a ceramic (Al2 O3 ) core material 2 with a round cross-section by filament winding method and a similar insulated rail is obtained in the same way. Consequently, the insulated rail and insulated members are free from compressive deformation and no high voltage plasma leakage occurs and acceleration efficiency to flying body can be heightened.