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    • 7. 发明专利
    • SURFACE FINISHING DEVICE FOR LARGE VACUUM CONTAINER
    • JP2000202776A
    • 2000-07-25
    • JP610499
    • 1999-01-13
    • HITACHI LTD
    • OTAKA KENJISATO OSAMUITAMI HIROYUKI
    • B24C3/06
    • PROBLEM TO BE SOLVED: To reduce gas emitted from a vacuum container in evacuation by installing a rotary table freely rotating within a horizontal plane on a truck moved on a rail installed in the vacuum container, providing a movable frame capable of moving in the vertical direction, and fixing a surface finishing device to the frame. SOLUTION: A rotary table 4 freely rotating within a horizontal plane is installed on a truck 3 freely moving on a rail 2 installed in the interior of a vacuum container 1. A rotary guide 5 is fixed to the rotary table 4, and a rotary frame 6 is rotatably installed along the guide. A rotation transmitting ring 7 is fixed through the rotary frame 6, and on the opposite side, a fitting frame 8 and a moving frame 10 capable of moving in the vertical direction of the rotating shaft of the rotation transmitting ring 7 are installed. A surface finishing device 11 is fixed to the moving frame 10. By this arrangement, surface finishing suitable for evacuation is applied to the surface of the vacuum container 1, so that in evacuation, gas emitted from the vacuum container 1 can be reduced.
    • 9. 发明专利
    • NOZZLE THROAT MEMBER FOR IMPULSIVE WIND TUNNEL
    • JPH07317714A
    • 1995-12-08
    • JP11504394
    • 1994-05-27
    • HITACHI LTD
    • ITAMI HIROYUKIWADA YUKIHIKOKOJIMA YOSHIYUKI
    • G01M9/04B05B1/00B64G7/00F15D1/00
    • PURPOSE:To restrain a deep crack which has reached a non-recrystallized layer from advancing in the downstream direction in a nozzle throat to be used for an impulsive wind tunnel. CONSTITUTION:In a nozzle throat member 1 provided with a function for throttling a passage in order to generate supersonic flow in a wind tunnel device for generating supersonic flow, and having its passage 1B formed into a circular shape in section, at least one type of materials for constituting the nozzle throat member is made of high melting point materials such as tungsten, molybdenum, etc. The nozzle throat member has Vickers hardness of Hv210 or more and is formed into flat so that crystal grains of a metallic fiber may be parallel to each other, and a flow passage 1B is formed in a direction that the passage axis is approximately perpendicular to a flat surface 1D of the crystal grains. Thereby, a shallow cracks is generated only on the front layer on the throat inner surface, but a deep crack which has reached the non-recrystallized range can be restrained from advancing in the downstream direction, as a result, turbulence can be restrained many times more than the conventional times, thereby the replacement frequency of the nozzle throat can be decreased.