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    • 1. 发明申请
    • Molten metal containment structure having flow through ventilation
    • 熔融金属容器结构具有通过通风的流动
    • US20110140318A1
    • 2011-06-16
    • US12928354
    • 2010-12-08
    • Eric W. ReevesJason D. HymasJohn Steven Tingey
    • Eric W. ReevesJason D. HymasJohn Steven Tingey
    • C21B7/04C21B7/16
    • C21B7/14B22D11/103B22D35/04C21C5/5294F27D3/14Y02P10/216
    • Exemplary embodiments of the invention provide a molten metal containment structure including a refractory molten metal containment vessel having an external surface, and a metal casing for the vessel having an internal surface at least partially surrounding the external surface of the vessel at a distance therefrom forming a spacing between the vessel and the casing. The spacing includes an unobstructed upwardly extending gap that is vented to the exterior of the structure by upper and lower openings in the casing. A layer of insulating material is preferably positioned in the spacing between the internal surface of the casing and the external surface of the vessel, with the layer of insulating material being narrower than the spacing at least at upwardly extending sides of the casing, thereby forming the unobstructed gap. The vessel may be a metal conveying trough, a housing for a metal filter, a container for a metal degasser unit, a crucible, or the like.
    • 本发明的示例性实施例提供了一种熔融金属容纳结构,其包括具有外表面的难熔熔融金属容纳容器和用于该容器的金属外壳,其具有至少部分围绕该容器的外表面的内表面,该内表面距离形成一个 容器和套管之间的间距。 该间隔包括通畅的向上延伸的间隙,其通过壳体中的上部开口和下部开口排放到结构的外部。 绝缘材料层优选地定位在壳体的内表面和容器的外表面之间的间隔中,绝缘材料层至少在壳体的至少在向上延伸的侧面处的间隔窄,从而形成 畅通无阻 容器可以是金属输送槽,用于金属过滤器的壳体,用于金属脱气装置的容器,坩埚等。
    • 2. 发明授权
    • Molten metal containment structure having flow through ventilation
    • 熔融金属容器结构具有通过通风的流动
    • US08883070B2
    • 2014-11-11
    • US12928354
    • 2010-12-08
    • Eric W. ReevesJason D. HymasJohn Steven Tingey
    • Eric W. ReevesJason D. HymasJohn Steven Tingey
    • C21B7/04C21B7/16C21B7/14B22D11/103F27D3/14C21C5/52B22D35/04
    • C21B7/14B22D11/103B22D35/04C21C5/5294F27D3/14Y02P10/216
    • Exemplary embodiments of the invention provide a molten metal containment structure including a refractory molten metal containment vessel having an external surface, and a metal casing for the vessel having an internal surface at least partially surrounding the external surface of the vessel at a distance therefrom forming a spacing between the vessel and the casing. The spacing includes an unobstructed upwardly extending gap that is vented to the exterior of the structure by upper and lower openings in the casing. A layer of insulating material is preferably positioned in the spacing between the internal surface of the casing and the external surface of the vessel, with the layer of insulating material being narrower than the spacing at least at upwardly extending sides of the casing, thereby forming the unobstructed gap. The vessel may be a metal conveying trough, a housing for a metal filter, a container for a metal degasser unit, a crucible, or the like.
    • 本发明的示例性实施例提供了一种熔融金属容纳结构,其包括具有外表面的难熔熔融金属容纳容器和用于该容器的金属外壳,其具有至少部分围绕该容器的外表面的内表面,该内表面距离形成一个 容器和套管之间的间距。 该间隔包括通畅的向上延伸的间隙,其通过壳体中的上部开口和下部开口排放到结构的外部。 绝缘材料层优选地定位在壳体的内表面和容器的外表面之间的间隔中,绝缘材料层至少在壳体的至少在向上延伸的侧面处的间隔窄,从而形成 畅通无阻 容器可以是金属输送槽,用于金属过滤器的壳体,用于金属脱气装置的容器,坩埚等。
    • 3. 发明申请
    • Flow control apparatus for molten metal
    • 熔融金属流量控制装置
    • US20110253753A1
    • 2011-10-20
    • US13066486
    • 2011-04-14
    • Jason D. HymasEric W. ReevesJohn Steven Tingey
    • Jason D. HymasEric W. ReevesJohn Steven Tingey
    • B22D41/00
    • B22D35/00B22D35/04B22D37/00
    • Exemplary embodiments of the invention relate to a flow control apparatus for control of molten metal flow through a trough. The apparatus includes a flow control element (e.g. a movable dam or flow restrictor) movable between an operating position and an inactive position. A guide element provides an elongated track having a first part extending generally parallel to the longitudinal axis of the flow control element. One or more track followers are retained by the guide element and are movable along the track. An elongated arm is attached at one end to the flow control element and to the track follower at an opposite end. An actuator operably connects to the track follower to move the track follower along the track. The track causes the flow control element to move away from the operating position with a straight (non-pivoting) motion, but preferably causes the flow control element to pivot as it approaches the inactive position. The flow control apparatus may be combined with a connector unit for connecting sections of a metal-conveying trough or the like, or may be used directly with such trough or trough sections.
    • 本发明的示例性实施例涉及一种用于控制通过槽的熔融金属流的流量控制装置。 该装置包括可在操作位置和非活动位置之间移动的流量控制元件(例如,可移动的大坝或限流器)。 引导元件提供细长的轨道,其具有大致平行于流量控制元件的纵向轴线延伸的第一部分。 一个或多个跟踪器由引导元件保持并且可以沿轨道移动。 细长的臂在一端附接到流量控制元件和在相对端的跟踪跟随器。 致动器可操作地连接到轨道跟随器以沿着轨道移动轨道跟随器。 轨道导致流量控制元件以直的(非旋转的)运动远离操作位置移动,但是优选地使流量控制元件在接近非活动位置时枢转。 流量控制装置可以与用于连接金属输送槽等的部分的连接器单元组合,或者可以直接与这种槽或槽部分一起使用。
    • 4. 发明授权
    • Flow control apparatus for molten metal
    • 熔融金属流量控制装置
    • US08580186B2
    • 2013-11-12
    • US13066486
    • 2011-04-14
    • Jason D. HymasEric W. ReevesJohn Steven Tingey
    • Jason D. HymasEric W. ReevesJohn Steven Tingey
    • B22D41/00
    • B22D35/00B22D35/04B22D37/00
    • Exemplary embodiments of the invention relate to a flow control apparatus for control of molten metal flow through a trough. The apparatus includes a flow control element (e.g. a movable dam or flow restrictor) movable between an operating position and an inactive position. A guide element provides an elongated track having a first part extending generally parallel to the longitudinal axis of the flow control element. One or more track followers are retained by the guide element and are movable along the track. An elongated arm is attached at one end to the flow control element and to the track follower at an opposite end. An actuator operably connects to the track follower to move the track follower along the track. The track causes the flow control element to move away from the operating position with a straight (non-pivoting) motion, but preferably causes the flow control element to pivot as it approaches the inactive position. The flow control apparatus may be combined with a connector unit for connecting sections of a metal-conveying trough or the like, or may be used directly with such trough or trough sections.
    • 本发明的示例性实施例涉及一种用于控制通过槽的熔融金属流的流量控制装置。 该装置包括可在操作位置和非活动位置之间移动的流量控制元件(例如,可移动的大坝或限流器)。 引导元件提供细长的轨道,其具有大致平行于流量控制元件的纵向轴线延伸的第一部分。 一个或多个跟踪器由引导元件保持并且可以沿轨道移动。 细长的臂在一端附接到流量控制元件和在相对端的跟踪跟随器。 致动器可操作地连接到轨道跟随器以沿着轨道移动轨道跟随器。 轨道导致流量控制元件以直的(非旋转的)运动远离操作位置移动,但是优选地使流量控制元件在接近非活动位置时枢转。 流量控制装置可以与用于连接金属输送槽等的部分的连接器单元组合,或者可以直接与这种槽或槽部分一起使用。
    • 10. 发明授权
    • Shower closure
    • 淋浴间
    • US5070550A
    • 1991-12-10
    • US465368
    • 1990-01-16
    • Eric W. Reeves
    • Eric W. Reeves
    • A47K3/30
    • A47K3/30
    • An improved closure for use in a space at the upper portion of a stall area for a bath, shower, spa or the like, to provide an humidity and heat barrier. A foldable thin sheet of material is supported by a framework mounted in the upper portion of the stall area. The framework is designed to be supported in the upper portion of the stall by urging against or securing to two opposing walls. A highly flexible material, such as a thin vinyl sheet or a fabric sheet, is chosen for the foldable sheet. The flexible sheet is supported by the framework in an inverted V-shaped arrangement.
    • 用于浴缸,淋浴器,温泉等的停放区域的上部的空间中的改进的闭合件,以提供湿气和隔热屏障。 可折叠的薄片材料由安装在失速区域的上部的框架支撑。 该框架设计为通过推动或固定在两个相对的墙壁上而在摊位的上部支撑。 为可折叠片选择高度柔性的材料,例如薄的乙烯基片或织物片。 柔性片由框架以倒V形布置支撑。