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    • 6. 发明授权
    • Continuous casting of lead alloy strip for heavy duty battery electrodes
    • 连续铸造用于重型电池电极的铅合金带
    • US08701745B2
    • 2014-04-22
    • US12926266
    • 2010-11-05
    • Jeffrey A. RossiTheodore J. Seymour
    • Jeffrey A. RossiTheodore J. Seymour
    • B22D11/06C22C11/08
    • B22D11/0611B21B1/26B22D11/001B22D11/064B22D11/0682B22D25/04C22C11/08C22C11/10
    • A method of continuously casting a lead alloy strip includes continuously supplying molten lead alloy to a tundish having a lip insert and containing a pool of molten lead alloy. The molten lead alloy is continuously supplied to the pool from a bath maintained at a temperature in the range of 575° to 750° F. The surface level of the molten alloy in the lip insert is controlled to produce a strip of desired thickness. The temperature of the lead alloy in the lip insert is controlled in a range of about 640° to 750° F. An abraded casting surface is moved upwardly through the pool for depositing the lead alloy thereon. The abraded casting surface is cooled to a temperature in the range of about 100° to 210° F. to solidify a strip of lead alloy, and the lead alloy strip is stripped from the abraded casting surface.
    • 连续铸造铅合金带的方法包括将熔融铅合金连续地供给到具有唇形插入件并且包含熔融铅合金池的中间包中。 将熔融铅合金从保持在575°至750°F范围内的温度的浴中连续供应到池中。控制唇形插入物中的熔融合金的表面水平以产生所需厚度的条带。 唇形插件中的铅合金的温度控制在约640°至750°F的范围内。磨损的铸造表面向上移动通过池,以在其上沉积铅合金。 将磨损的铸造表面冷却至约100°至210°F的温度,以固化铅合金条,并将铅合金带从磨损的铸造表面剥离。
    • 9. 发明授权
    • Mold for a battery cast on strap
    • 用于在电池上铸造的电池模具
    • US08181691B1
    • 2012-05-22
    • US13301761
    • 2011-11-21
    • Robert W. NealMichael A. Garin
    • Robert W. NealMichael A. Garin
    • B22D19/04B22D27/04
    • B22D25/04B22D19/04B22D27/04
    • A dual temperature mold assembly for maintaining a mold cavity used in a cast on strap process at two different temperatures facilitates the removal of the solidified strap after the molten metal is solidified. The mold assembly includes a mold cavity having walls attached to different mold assembly segments that are heated or cooled by thermal energy input and coolant processes which can maintain the mold cavities at different temperatures, so that molten metal around the battery plate lugs in a mold cavity segment is solidified while the sides of the mold cavity are exposed to at least one adjacent heated segment to provide thermal energy thereinto, resulting in a reduction of the amount of molten metal necessary for a cast on strap, and reducing the amount of thermal energy input into the process for manufacturing the straps.
    • 用于在两个不同温度下保持在铸造过程中使用的模腔的双温度模具组件有助于在熔融金属固化之后去除固化的带。 模具组件包括模具腔体,其具有附接到不同模具组件段的壁,其被热能输入和可以将模具腔保持在不同温度的冷却剂过程加热或冷却,使得电池板周围的熔融金属在模具腔 模具腔的侧面暴露于至少一个相邻的加热段以提供热能,从而减少了钢带上铸件所需的熔融金属量,并减少了热能输入量 进入生产带的过程。
    • 10. 发明申请
    • MOLD FOR A BATTERY CAST ON STRAP
    • 电池用于电池的模具
    • US20110146934A1
    • 2011-06-23
    • US12623417
    • 2009-12-18
    • Robert W. NEALMichael A. Garin
    • Robert W. NEALMichael A. Garin
    • B22D25/00B22C9/22B22C9/08B22D29/00B22D46/00
    • B22D25/04B22D19/04B22D27/04
    • A dual temperature mold assembly for maintaining a mold cavity used in a cast on strap process at two different temperatures facilitates the removal of the solidified strap after the molten metal is solidified. The mold assembly includes a mold cavity having walls attached to different mold assembly segments that are heated or cooled by thermal energy input and coolant processes which can maintain the mold cavities at different temperatures, so that molten metal around the battery plate lugs in a mold cavity segment is solidified while the sides of the mold cavity are exposed to at least one adjacent heated segment to provide thermal energy thereinto, resulting in a reduction of the amount of molten metal necessary for a cast on strap, and reducing the amount of thermal energy input into the process for manufacturing the straps.
    • 用于在两个不同温度下保持在铸造过程中使用的模腔的双温度模具组件有助于在熔融金属固化之后去除固化的带。 模具组件包括模具腔体,其具有附接到不同模具组件段的壁,其被热能输入和可以将模具腔保持在不同温度的冷却剂过程加热或冷却,使得电池板周围的熔融金属在模具腔 模具腔的侧面暴露于至少一个相邻的加热段以提供热能,从而减少了钢带上铸件所需的熔融金属量,并减少了热能输入量 进入生产带的过程。