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    • 1. 发明申请
    • Furnaces and methods of melting
    • 熔炉和熔化方法
    • US20050035503A1
    • 2005-02-17
    • US10399508
    • 2001-10-16
    • Alan PeelRoger Howitt
    • Alan PeelRoger Howitt
    • F27D27/00F27B3/12F27D3/00F27D3/14C21C5/42
    • F27D27/00F27B3/12F27D3/14F27D2003/0054Y10S266/90
    • The invention provides an improved furnace structure and methods of melting material in furnaces, particularly aimed at reducing the start up time for such furnaces. The furnace (2) defines a container for the molten metal having a maximum depth of molten metal in that container during use. A flow generator (30) for the molten metal within the furnace is fed through a first conduit (32) and supplies maternal back to the furnace through a second conduit (36). The first conduit entrance is provided in the upper 60% of the maximum depth of the molten metal in the container and/or the second conduit exit is provided in the lower 25% of the maximum depth of the molten metal in the container. The flow generator may receive material preferentially from around the periphery of the container and/or direct material towards the centre of the container. The inlet and outlet to the flow generator my be angled downwards towards the container. All of these features improve heat transfer and material circulation within the furnace.
    • 本发明提供了一种改进的炉结构和熔炉中的材料的方法,特别是旨在减少这种炉的启动时间。 炉(2)在使用期间限定了用于熔融金属的容器,该容器在该容器中具有熔融金属的最大深度。 用于炉内的熔融金属的流动发生器(30)通过第一导管(32)供给,并且通过第二导管(36)将母体返回到炉中。 第一导管入口设置在容器中熔融金属的最大深度的上部60%中,和/或第二导管出口设置在容器中熔融金属的最大深度的25%以内。 流动发生器可以优选地从容器的周边和/或直接材料朝向容器的中心接收材料。 流量发生器的入口和出口我朝向容器向下倾斜。 所有这些特征都改善了炉内的热传递和物料循环。
    • 2. 发明申请
    • Furnaces and methods of melting
    • 熔炉和熔化方法
    • US20080023891A1
    • 2008-01-31
    • US11891726
    • 2007-08-13
    • Alan PeelRoger Howitt
    • Alan PeelRoger Howitt
    • F27D3/00
    • F27D27/00F27B3/12F27D3/14F27D2003/0054Y10S266/90
    • The invention provides an improved furnace structure and methods of melting material in furnaces, particularly aimed at reducing the start up time for such furnaces. The furnace (2) defines a container for the molten metal having a maximum depth of molten metal in that container during use. A flow generator (30) for the molten metal within the furnace is fed through a first conduit (32) and supplies material back to the furnace through a second conduit (36). The first conduit entrance is provided in the upper 60% of the maximum depth of the molten metal in the container and/or the second conduit exit is provided in the lower 25% of the maximum depth of the molten metal in the container. The flow generator may receive material preferentially from around the periphery of the container and/or direct material towards the centre of the container. The inlet and outlet to the flow generator may be angled downwards towards the container. All of these features improve heat transfer and material circulation within the furnace.
    • 本发明提供了一种改进的炉结构和熔炉中的材料的方法,特别是旨在减少这种炉的启动时间。 炉(2)在使用期间限定了用于熔融金属的容器,该容器在该容器中具有熔融金属的最大深度。 用于炉内的熔融金属的流动发生器(30)通过第一导管(32)进料,并通过第二导管(36)将材料返回到炉中。 第一导管入口设置在容器中熔融金属的最大深度的上部60%中,和/或第二导管出口设置在容器中熔融金属的最大深度的25%以内。 流动发生器可以优选地从容器的周边和/或直接材料朝向容器的中心接收材料。 流动发生器的入口和出口可朝向容器向下倾斜。 所有这些特征都改善了炉内的热传递和物料循环。
    • 6. 发明授权
    • Scrap submergence system
    • 废水淹没系统
    • US09476644B2
    • 2016-10-25
    • US14131227
    • 2012-07-09
    • Roger HowittJim GraysonMark BoltonPaul Bosworth
    • Roger HowittJim GraysonMark BoltonPaul Bosworth
    • F27B3/18F27D3/14C22B7/00F27B3/04C22B21/00F27D27/00
    • F27B3/045C22B7/003C22B21/0092F27B3/18F27D27/00Y02P10/218
    • In accordance with one aspect of an exemplary embodiment, a furnace including a charge well is provided. The charge well comprises an open top chamber including side and base walls of a heat resistant material. An inlet is provided in a side wall of the chamber for receiving molten metal. A ramp is provided adjacent the side wall and an inner wall forms a central cavity. The ramp is disposed between the inner wall and the side wall. The ramp is generally inclined from an intersection with the base wall to adjacent a top surface of the inner wall. The cavity is in fluid communication with an outlet. A passage in the inner wall provides fluid communication between the inlet and the cavity. The inlet and an outlet each receives a conduit and at least one of the conduits can include an elbow joint.
    • 根据示例性实施例的一个方面,提供了包括电荷井的炉子。 电荷井包括敞开的顶部室,其包括耐热材料的侧壁和底壁。 入口设置在腔室的侧壁中,用于接收熔融金属。 在侧壁附近提供斜面,并且内壁形成中心腔。 斜坡设置在内壁和侧壁之间。 斜面通常从与基壁的交叉部相邻地邻近内壁的顶表面倾斜。 空腔与出口流体连通。 内壁中的通道提供入口和空腔之间的流体连通。 入口和出口各自容纳导管,并且至少一个导管可包括肘关节。
    • 7. 发明申请
    • SCRAP SUBMERGENCE SYSTEM
    • SCRAP子系统
    • US20140232048A1
    • 2014-08-21
    • US14131227
    • 2012-07-09
    • Roger HowittJim GraysonMark BoltonPaul Bosworth
    • Roger HowittJim GraysonMark BoltonPaul Bosworth
    • F27B3/04F27B3/18
    • F27B3/045C22B7/003C22B21/0092F27B3/18F27D27/00Y02P10/218
    • In accordance with one aspect of an exemplary embodiment, a furnace including a charge well is provided. The charge well comprises an open top chamber including side and base walls of a heat resistant material. An inlet is provided in a side wall of the chamber for receiving molten metal. A ramp is provided adjacent the side wall and an inner wall forms a central cavity. The ramp is disposed between the inner wall and the side wall. The ramp is generally inclined from an intersection with the base wall to adjacent a top surface of the inner wall. The cavity is in fluid communication with an outlet. A passage in the inner wall provides fluid communication between the inlet and the cavity. The inlet and an outlet each receives a conduit and at least one of the conduits can include an elbow joint.
    • 根据示例性实施例的一个方面,提供了包括电荷井的炉子。 电荷井包括敞开的顶部室,其包括耐热材料的侧壁和底壁。 入口设置在腔室的侧壁中,用于接收熔融金属。 在侧壁附近提供斜面,并且内壁形成中心腔。 斜坡设置在内壁和侧壁之间。 斜面通常从与基壁的交叉部相邻地邻近内壁的顶表面倾斜。 空腔与出口流体连通。 内壁中的通道提供入口和空腔之间的流体连通。 入口和出口各自容纳导管,并且至少一个导管可包括肘关节。
    • 8. 发明授权
    • Furnaces and methods of melting
    • 熔炉和熔化方法
    • US07691322B2
    • 2010-04-06
    • US11891726
    • 2007-08-13
    • Alan Michael PeelRoger Howitt
    • Alan Michael PeelRoger Howitt
    • F27D3/00
    • F27D27/00F27B3/12F27D3/14F27D2003/0054Y10S266/90
    • The invention provides an improved furnace structure and methods of melting material in furnaces, particularly aimed at reducing the start up time for such furnaces. The furnace (2) defines a container for the molten metal having a maximum depth of molten metal in that container during use. A flow generator (30) for the molten metal within the furnace is fed through a first conduit (32) and supplies material back to the furnace through a second conduit (36). The first conduit entrance is provided in the upper 60% of the maximum depth of the molten metal in the container and/or the second conduit exit is provided in the lower 25% of the maximum depth of the molten metal in the container. The flow generator may receive material preferentially from around the periphery of the container and/or direct material towards the centre of the container. The inlet and outlet to the flow generator may be angled downwards towards the container. All of these features improve heat transfer and material circulation within the furnace.
    • 本发明提供了一种改进的炉结构和熔炉中的材料的方法,特别是旨在减少这种炉的启动时间。 炉(2)在使用期间限定了用于熔融金属的容器,该容器在该容器中具有熔融金属的最大深度。 用于炉内的熔融金属的流动发生器(30)通过第一导管(32)进料,并通过第二导管(36)将材料返回到炉中。 第一导管入口设置在容器中熔融金属的最大深度的上部60%中,和/或第二导管出口设置在容器中熔融金属的最大深度的25%以内。 流动发生器可以优选地从容器的周边和/或直接材料朝向容器的中心接收材料。 流动发生器的入口和出口可朝向容器向下成角度。 所有这些特征都改善了炉内的热传递和物料循环。