会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • OVERSHAFT FLUID TRANSFER COUPLING AND MOUNTING ARRANGEMENT
    • 船舶流体传动联接和安装布置
    • US20130184113A1
    • 2013-07-18
    • US13350893
    • 2012-01-16
    • Dean A. NoremTimothy P. Walgren
    • Dean A. NoremTimothy P. Walgren
    • F16H47/04F16L21/00B23P17/00
    • F16L39/04Y10T29/494
    • In one example embodiment, a fluid transfer coupling arrangement includes a hollow shaft that is arranged in a housing and rotatable about an axis. The hollow shaft is provided by a wall having radially spaced interior and exterior surfaces. A first passage extends through the wall and is configured to communicate fluid between the interior and exterior surfaces. A fluid coupling is located mid-shaft, sealed about the exterior surface, and aligns to the first passage. The fluid coupling provides a second passage that is in fluid communication with the first passage. The fluid coupling includes a locating feature configured to permit radial movement of the fluid coupling relative to the housing and allowing the fluid coupling to track subtle shaft movements.
    • 在一个示例性实施例中,流体传递耦合装置包括布置在壳体中并可围绕轴线旋转的中空轴。 空心轴由具有径向间隔的内部和外部表面的壁提供。 第一通道延伸穿过壁并构造成在内表面和外表面之间连通流体。 流体联轴器位于中轴处,围绕外表面密封,并与第一通道对准。 流体联接器提供与第一通道流体连通的第二通道。 流体联接器包括定位特征,其被配置为允许流体联接器相对于壳体的径向移动并允许流体联接器跟踪微小的轴运动。
    • 4. 发明授权
    • Overshaft fluid transfer coupling and mounting arrangement
    • 超轴传动联轴器和安装方式
    • US09163767B2
    • 2015-10-20
    • US13350893
    • 2012-01-16
    • Dean A. NoremTimothy P. Walgren
    • Dean A. NoremTimothy P. Walgren
    • F16L39/04
    • F16L39/04Y10T29/494
    • In one example embodiment, a fluid transfer coupling arrangement includes a hollow shaft that is arranged in a housing and rotatable about an axis. The hollow shaft is provided by a wall having radially spaced interior and exterior surfaces. A first passage extends through the wall and is configured to communicate fluid between the interior and exterior surfaces. A fluid coupling is located mid-shaft, sealed about the exterior surface, and aligns to the first passage. The fluid coupling provides a second passage that is in fluid communication with the first passage. The fluid coupling includes a locating feature configured to permit radial movement of the fluid coupling relative to the housing and allowing the fluid coupling to track subtle shaft movements.
    • 在一个示例性实施例中,流体传递耦合装置包括布置在壳体中并可围绕轴线旋转的中空轴。 空心轴由具有径向间隔的内部和外部表面的壁提供。 第一通道延伸穿过壁并构造成在内表面和外表面之间连通流体。 流体联轴器位于中轴处,围绕外表面密封,并与第一通道对准。 流体联接器提供与第一通道流体连通的第二通道。 流体联接器包括定位特征,其被配置为允许流体联接器相对于壳体的径向移动并允许流体联接器跟踪微小的轴运动。
    • 9. 发明授权
    • Carrier for planetary gear system
    • 行星齿轮系承载
    • US08771124B2
    • 2014-07-08
    • US13350887
    • 2012-01-16
    • Dean A. NoremDavid L. Wakefield
    • Dean A. NoremDavid L. Wakefield
    • F16H57/04F16H57/08
    • F16H57/082F16H57/043F16H57/0479F16H57/0486
    • A planetary gear system includes a sun gear rotatable about an axis. Planetary gears are circumferentially arranged about and intermesh with the sun gear and peripherally with a ring gear. Each of the planetary gears is supported by a journal bearing arranged in a bore in a carrier wall. A carrier supports the journal bearings and is configured to rotate about the axis and carry the planetary gears. The carrier wall supports the journal bearings and has spaced apart lateral surfaces. A scupper is arranged between the lateral surfaces and provides an inlet in one of the lateral surfaces, in this example facing the sun gear. The inlet has a first circumferential dimension, and a passage fluidly interconnects the scupper to one of the journal bearings via the bore. The passage has a second circumferential dimension less than the first circumferential dimension.
    • 行星齿轮系统包括可围绕轴线旋转的太阳齿轮。 行星齿轮围绕太阳齿轮周围布置并与齿圈周边布置。 每个行星齿轮由布置在载体壁上的孔中的轴颈轴承支撑。 载体支撑轴颈轴承,并且被配置为围绕轴线旋转并承载行星齿轮。 载体壁支撑轴颈轴承并具有间隔开的侧表面。 在侧表面之间布置有排水器,并且在该示例中的一个侧表面中提供面向太阳齿轮的入口。 入口具有第一周向尺寸,并且通道经由孔将散热器与轴颈轴承中的一个流体地相互连接。 通道具有小于第一周向尺寸的第二圆周尺寸。
    • 10. 发明申请
    • CARRIER FOR PLANETARY GEAR SYSTEM
    • 行星齿轮传动系统
    • US20130184114A1
    • 2013-07-18
    • US13350887
    • 2012-01-16
    • Dean A. NoremDavid L. Wakefield
    • Dean A. NoremDavid L. Wakefield
    • F16H57/08F16H57/04
    • F16H57/082F16H57/043F16H57/0479F16H57/0486
    • A planetary gear system includes a sun gear rotatable about an axis. Planetary gears are circumferentially arranged about and intermesh with the sun gear and peripherally with a ring gear. Each of the planetary gears is supported by a journal bearing arranged in a bore in a carrier wall. A carrier supports the journal bearings and is configured to rotate about the axis and carry the planetary gears. The carrier wall supports the journal bearings and has spaced apart lateral surfaces. A scupper is arranged between the lateral surfaces and provides an inlet in one of the lateral surfaces, in this example facing the sun gear. The inlet has a first circumferential dimension, and a passage fluidly interconnects the scupper to one of the journal bearings via the bore. The passage has a second circumferential dimension less than the first circumferential dimension.
    • 行星齿轮系统包括可围绕轴线旋转的太阳齿轮。 行星齿轮围绕太阳齿轮周围布置并与齿圈周边布置。 每个行星齿轮由布置在载体壁上的孔中的轴颈轴承支撑。 载体支撑轴颈轴承,并且被配置为围绕轴线旋转并承载行星齿轮。 载体壁支撑轴颈轴承并具有间隔开的侧表面。 在侧表面之间布置有排水器,并且在该示例中的一个侧表面中提供面向太阳齿轮的入口。 入口具有第一周向尺寸,并且通道经由孔将散热器与轴颈轴承中的一个流体地相互连接。 通道具有小于第一周向尺寸的第二圆周尺寸。