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    • 1. 发明授权
    • Submerged entry nozzle
    • 浸入式喷嘴
    • US08758672B2
    • 2014-06-24
    • US12998842
    • 2009-01-21
    • Gerald NitzlJohn Davies
    • Gerald NitzlJohn Davies
    • B22D41/08
    • B22D41/58B22D11/10
    • Nozzle for guiding molten metal, including an inlet at an upstream first end, at least one outlet towards a downstream second end, and an inner surface between the inlet and the outlet defining a bore through the nozzle having a throat region adjacent the inlet. An annular channel is provided in the inner surface of the nozzle, and a fluid supply is arranged to introduce fluid into the bore via the annular channel or downstream thereof. The throat region has a convexly curved surface and the annular channel is located within or adjacent the convexly curved surface of the throat region.
    • 用于引导熔融金属的喷嘴,包括在上游第一端处的入口,朝向下游第二端的至少一个出口,以及在入口和出口之间的内表面,其限定通过喷嘴的孔,其具有邻近入口的喉部区域。 在喷嘴的内表面中设置有环形通道,并且流体供应装置被布置成经由环形通道或其下游将流体引入孔中。 喉部区域具有凸曲面,并且环形通道位于喉部区域的凸曲面内或邻近其中。
    • 2. 发明申请
    • SUBMERGED ENTRY NOZZLE
    • 已进入进口喷嘴
    • US20110315721A1
    • 2011-12-29
    • US12998842
    • 2009-01-21
    • Gerald NitzlJohn Davies
    • Gerald NitzlJohn Davies
    • B67D7/06
    • B22D41/58B22D11/10
    • A nozzle (410) for guiding molten metal comprises an inlet (106) at an upstream first end and at least one outlet (210) towards a downstream second end. An inner surface (117) is provided between the inlet (106) and the at least one outlet (210) to define a bore (118) through the nozzle (410). The bore (118) has a throat region (200) adjacent the inlet (106). An annular channel (420) is provided in the inner surface of the nozzle (410). A fluid supply means (900) is arranged to introduce fluid into the bore (118) via the annular channel (420) or downstream thereof. The throat region (200) has a convexly curved surface and the annular channel (420) is located within or adjacent the throat region (200). The invention also provides for a method of controlling the flow of molten metal through a nozzle (410), as described above, and a system for controlling the flow of molten metal. The system comprises a nozzle (410), as described above, and a stopper rod (100) configured to be received in the throat region (200) of the nozzle (410) to control the flow of molten metal through the nozzle (410).
    • 用于引导熔融金属的喷嘴(410)包括在上游第一端处的入口(106)和朝向下游第二端的至少一个出口(210)。 内表面(117)设置在入口(106)和至少一个出口(210)之间以限定通过喷嘴(410)的孔(118)。 孔(118)具有邻近入口(106)的喉部区域(200)。 在喷嘴(410)的内表面中设置环形通道(420)。 流体供应装置(900)布置成经由环形通道(420)或其下游将流体引入孔(118)。 喉部区域(200)具有凸曲面,并且环形通道(420)位于喉部区域(200)内或附近。 本发明还提供了如上所述通过喷嘴(410)控制熔融金属的流动的方法,以及用于控制熔融金属流动的系统。 系统包括如上所述的喷嘴(410)和构造成容纳在喷嘴(410)的喉部区域(200)中以控制熔融金属通过喷嘴(410)的流动的塞杆(100) 。
    • 4. 发明申请
    • Non-Metallic Raceway for Wiring and Fiber Optic Cable and Method of Forming Raceway
    • 用于接线和光纤电缆的非金属轨道和形成跑道的方法
    • US20120114290A1
    • 2012-05-10
    • US13351709
    • 2012-01-17
    • John Davies
    • John Davies
    • G02B6/44B29C65/02H02G3/04F16L13/02
    • F16L13/02B29C57/02B29C66/1142B29C66/322B29C66/5221B29C66/71G02B6/4459H02G3/0616B29K2023/06B29K2027/06
    • A continuous, non-metallic conduit for conductors, such as electrical wiring and/or fiber optic cable. The continuous conduit being formed from at least one pair of first and second conduits having enlarged ends coupled together. The enlarged ends are belled or otherwise have a diameter greater than that of the straight run (non-belled) portions of the conduit. The enlarged ends of the conduit being coupled together by fusion or welding, and an internal bead or ridge being formed by the coupling process. The enlarged ends are dimensioned such that the internal bead or ridge formed at the junction between the two enlarged ends does not project radially inward to a position equal to or less than the diameter of the straight run portion of the conduits. The continuous conduit is configured to allow the conductor to be passed therethrough such that the conductor does not contact the internal bead or ridge.
    • 用于导体的连续的非金属导管,例如电线和/或光纤电缆。 连续管道由至少一对第一和第二管道形成,第一和第二管道具有扩大的端部联接在一起。 扩大的端部被鼓起或者具有比导管的直线(非鼓形)部分的直径大的直径。 通过熔接或焊接将导管的扩大端连接在一起,以及通过耦合过程形成的内部珠或脊。 扩大的端部的尺寸使得形成在两个扩大端部之间的接合部处的内部胎圈或脊部不径向向内突出到等于或小于导管的直线部分的直径的位置。 连续管道被配置为允许导体通过,使得导体不接触内部珠缘或脊。