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    • 1. 发明申请
    • VARIABLE GEOMETRY TURBINE
    • 可变几何涡轮
    • US20130294895A1
    • 2013-11-07
    • US13807258
    • 2011-08-31
    • Takao YokoyamaHiroshi SuzukiMotoki EbisuToyotaka Yoshida
    • Takao YokoyamaHiroshi SuzukiMotoki EbisuToyotaka Yoshida
    • F01D17/16
    • F01D17/165F02B37/24F02C6/12F05D2220/40
    • A variable geometry turbine includes a fluid space formed by a nozzle mount and a nozzle plate; and a plurality of nozzle vanes arranged in the fluid space at certain intervals in the circumferential direction so as to partition the fluid space. The nozzle vanes are supported by shafts on the nozzle mount, in such a manner as to be capable of turning. The flow rate of the discharged fluid can be adjusted by opening or closing the cross-sectional area of a flow path formed by the adjacent nozzle vanes. The nozzle plate is provided with plate projections protruding toward the nozzle vanes further than, at least, end surfaces of the nozzle vanes, so as to cover the spaces between leading edges of the nozzle vanes and trailing edges of the nozzle vanes adjacent thereto, when the nozzle vanes are at a closed position.
    • 可变几何涡轮机包括由喷嘴座和喷嘴板形成的流体空间; 以及沿圆周方向以一定间隔布置在流体空间中的多个喷嘴叶片,以便分隔流体空间。 喷嘴叶片以能够转动的方式由喷嘴座上的轴支撑。 可以通过打开或关闭由相邻喷嘴叶片形成的流路的横截面积来调节排出流体的流量。 喷嘴板设置有板突起,其比喷嘴叶片的至少端表面突出,以覆盖喷嘴叶片的前缘和与其相邻的喷嘴叶片的后缘之间的空间, 喷嘴叶片处于关闭位置。
    • 2. 发明授权
    • Variable geometry turbine
    • 可变几何涡轮机
    • US09028202B2
    • 2015-05-12
    • US13807258
    • 2011-08-31
    • Takao YokoyamaHiroshi SuzukiMotoki EbisuToyotaka Yoshida
    • Takao YokoyamaHiroshi SuzukiMotoki EbisuToyotaka Yoshida
    • F01D17/16F02C6/12F02B37/24
    • F01D17/165F02B37/24F02C6/12F05D2220/40
    • A variable geometry turbine includes a fluid space formed by a nozzle mount and a nozzle plate; and a plurality of nozzle vanes arranged in the fluid space at certain intervals in the circumferential direction so as to partition the fluid space. The nozzle vanes are supported by shafts on the nozzle mount, in such a manner as to be capable of turning. The flow rate of the discharged fluid can be adjusted by opening or closing the cross-sectional area of a flow path formed by the adjacent nozzle vanes. The nozzle plate is provided with plate projections protruding toward the nozzle vanes further than, at least, end surfaces of the nozzle vanes, so as to cover the spaces between leading edges of the nozzle vanes and trailing edges of the nozzle vanes adjacent thereto, when the nozzle vanes are at a closed position.
    • 可变几何涡轮机包括由喷嘴座和喷嘴板形成的流体空间; 以及沿圆周方向以一定间隔布置在流体空间中的多个喷嘴叶片,以便分隔流体空间。 喷嘴叶片以能够转动的方式由喷嘴座上的轴支撑。 可以通过打开或关闭由相邻喷嘴叶片形成的流路的横截面积来调节排出流体的流量。 喷嘴板设置有板突起,其比喷嘴叶片的至少端表面突出,以覆盖喷嘴叶片的前缘和与其相邻的喷嘴叶片的后缘之间的空间, 喷嘴叶片处于关闭位置。