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    • 1. 发明授权
    • Tandem seal device
    • 串联密封装置
    • US08585060B2
    • 2013-11-19
    • US12743602
    • 2008-11-18
    • Yoji OshiiKoji AkiyamaJoji WatanabeAtsushi Kaneko
    • Yoji OshiiKoji AkiyamaJoji WatanabeAtsushi Kaneko
    • F16J15/34
    • F16J15/342F16J15/004F16J15/3484F16J15/40
    • A mechanical seal device for obtaining appropriate sliding properties under any conditions, such as a pressure of seal is low or high. Both first grooves 463 and second grooves 464 are formed on a sliding face 46 of a stationary ring 46. The first grooves which are not in communication externally and act for reducing contact resistance of a sliding face by a dynamic pressure action when a rotary shaft rotates, the second grooves act for reducing the contact resistance of the sliding face constantly by introducing a pressure from external. Thus, a mechanical seal device which is available to seal sealed fluid under an appropriate dry contact status wherein a sliding face load is reduced in any condition can be provided.
    • 用于在诸如密封压力的任何条件下获得适当的滑动性能的机械密封装置低或高。 第一凹槽463和第二凹槽464都形成在静止环46的滑动面46上。当旋转轴旋转时,不与外部连通的第一凹槽用于通过动压力降低滑动面的接触电阻 ,第二槽用于通过从外部引入压力来不断地减小滑动面的接触电阻。 因此,可以提供在适当的干接触状态下可用于密封密封流体的机械密封装置,其中在任何情况下滑动面负载减小。
    • 2. 发明授权
    • Lens device with anti-fogging
    • 镜头装置防雾
    • US5894369A
    • 1999-04-13
    • US967659
    • 1997-11-10
    • Harou AkibaNaotake MitsumoriJoji WatanabeYuichi Torii
    • Harou AkibaNaotake MitsumoriJoji WatanabeYuichi Torii
    • A61B1/05A61B1/12G02B23/24G02B7/02G02B11/04
    • A61B1/00096A61B1/127G02B23/2423A61B1/05
    • An anti-fogging lens device, having a plural number of optical glass lens elements mounted within a lens barrel, including a first lens element located in a foremost position on the side of a subject and a second lens element located behind and at a space from the first lens element. A spacer ring is fitted in the lens barrel to set apart the first and second lens elements by a gap space of a predetermined width. The spacer ring is formed of a material having higher thermal conductivity than the lens elements and, on the inner peripheral side thereof, provided with a moisture depositing surface which is formed in a non-flat shape to increase its surface area. The lens barrel is fitted in a cylindrical member, and a seal pocket, to be packed with a seal material, is formed between the lens barrel and the cylindrical member to stop clearances between these two members with a secure hermetical seal.
    • 一种防雾透镜装置,具有安装在镜筒内的多个光学玻璃透镜元件,包括位于被检体侧面的最前位置的第一透镜元件和位于被检体侧面的第二透镜元件, 第一透镜元件。 间隔环安装在镜筒中,以通过预定宽度的间隙来分离第一和第二透镜元件。 间隔环由具有比透镜元件更高的热导率的材料形成,并且在其内周侧上设置有形成为非平坦形状的水分沉积表面以增加其表面积。 透镜筒装配在圆柱形构件中,并且在透镜筒和圆柱形构件之间形成要封装有密封材料的密封袋,以通过安全的密封封住这两个构件之间的间隙。
    • 4. 发明授权
    • Adjustable tubular hair cutting apparatus
    • 可调节管状头发切割装置
    • US4970787A
    • 1990-11-20
    • US493636
    • 1990-03-15
    • Joji WatanabeShigeko Watanabe
    • Joji WatanabeShigeko Watanabe
    • B26B19/44
    • B26B19/44
    • An apparatus including a cylindrical housing mounting an upper cylindrical housing slidably thereto to vary a spacing between an entrance of the upper cylindrical housing to a series of cutting blades. The cutting blades are mounted to a rotating shaft of an electric motor, with an exhaust conduit positioned between the electric motor and the cutting blades for directing cut hair and debris exteriorly of the housing, with the conduit associated with a source of vacuum, and wherein the conduit includes sliding doors for varying the degree of vacuum directed to the conduit. Alternative configurations include a self-enclosed housing with the vacuum source defined by impeller blades mounted within a lowermost portion of the housing underlying a porous bag with the housing separable to gain access to the porous bag utilizing either a direct drive for the impeller blades, or alternatively a gear drive to circumvent the porous bag.
    • 一种包括圆柱形壳体的装置,其可滑动地安装上部圆柱形壳体以改变上部圆柱形壳体的入口与一系列切割刀片之间的间隔。 切割刀片安装到电动机的旋转轴上,排气管定位在电动马达和切割刀片之间,用于在外壳的外部引导切割的毛发和碎片,导管与真空源相关联,并且其中 导管包括用于改变指向导管的真空度的滑动门。 替代配置包括自封闭壳体,其中真空源由叶轮叶片所限定,叶轮叶片安装在多孔袋下面的壳体的最下部分内,壳体可分离以利用用于叶轮叶片的直接驱动来进入多孔袋,或 或者是绕过多孔袋的齿轮传动装置。