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    • 2. 发明申请
    • METHOD FOR CASTING A COMPOSITE INGOT
    • 铸造复合材料的方法
    • US20110146937A1
    • 2011-06-23
    • US13000296
    • 2009-06-03
    • Joost Christiaan StormAndreas Ten cateIngo Gunther KropflAchim Burger
    • Joost Christiaan StormAndreas Ten cateIngo Gunther KropflAchim Burger
    • B22D11/10B22D19/00B22D11/14
    • B22D19/16B22D11/008B22D19/0081B22D19/08B22D19/085
    • Method and apparatus employing a casting mould including a liquid feed end for supplying the casting mould with molten second alloy and an exit end with an outlet for casting molten second alloy downwardly. While continuously moving the mould and an elongated solid first alloy substrate relative to one another casting molten second alloy passes downwardly through at least one outlet of the mould onto an upper surface of the substrate at a temperature wherein the substrate locally at least partly remelts beginning at a reference point of a remelting zone and mixes at least partly with molten second alloy to form an alloy pool. After remelting the molten alloy pool continuously cools and solidifies at a location away from the reference point and joins the substrate to form composite ingot including at least two separately formed layers of one or more alloys before discharging from the mould.
    • 使用包括用于向铸模供应熔融的第二合金的液体进料端和具有用于向下铸造熔融的第二合金的出口的出口端的铸模的方法和装置。 当连续移动模具并且细长的固体第一合金基底相对于彼此铸造熔融的第二合金在其温度下通过模具的至少一个出口向下延伸到衬底的上表面上,其中衬底局部至少部分地重熔 重熔区的参考点,并至少部分地与熔融的第二合金混合以形成合金池。 再熔熔融合金池在离基准点的位置连续地冷却和固化,并且在从模具排出之前,将衬底接合以形成包括至少两个单独形成的一种或多种合金层的复合锭。
    • 5. 发明申请
    • METHOD FOR MANUFACTURING A WROUGHT METAL PLATE PRODUCT HAVING A GRADIENT IN ENGINEERING PROPERTIES
    • 制造具有工程特性等级的金属制品的方法
    • US20090090437A1
    • 2009-04-09
    • US12234632
    • 2008-09-20
    • Andreas ten CATESunil KHOSLAAchim BUERGERSabine Maria SPANGEL
    • Andreas ten CATESunil KHOSLAAchim BUERGERSabine Maria SPANGEL
    • C21D9/00C21D1/62
    • C22F1/04C22C21/00
    • Manufacturing heat-treatable wrought metal plate having length, width and thickness directions and an engineering properties gradient along at least one plate dimension. Rolled, extruded or forged wrought metal plate is solution heat treated and rapidly cooled. The cooled plate is aged by heat treatment for time to arrive at different tempers across at least one plate dimension (length or width). Controlled heat-input into the plate along its length direction raises plate temperature above ambient temperature to temperature T1, and a temperature gradient is applied between temperature T2 and T3, wherein T2>T3, across at least one direction of the plate by controlled heat-input into the plate from one side (width or thickness) of the plate to temperature T2 and controlled cooling to temperature T3 from the plate at the opposite side of the controlled heat-input, and ageing the plate while applying the temperature gradient between T2 and T3.
    • 制造具有长度,宽度和厚度方向的可热处理锻造金属板,以及至少一个板尺寸的工程性质梯度。 轧制,挤压或锻造的锻造金属板进行固溶热处理并快速冷却。 冷却板通过热处理时间达到不同的温度,穿过至少一个板尺寸(长度或宽度)。 沿着其长度方向对板进行受控热输入将板温度升高到环境温度至温度T1,并且通过受控制的热处理在板的至少一个方向上在T2和T3之间施加温度梯度,其中T2> T3, 从板的一侧(宽度或厚度)到温度T2输入到板中,并从受控热输入的相对侧的板控制冷却到温度T3,并且在施加T2和T2之间的温度梯度的同时老化板 T3。
    • 6. 发明授权
    • Method for casting a composite ingot
    • 铸造复合锭的方法
    • US08312916B2
    • 2012-11-20
    • US13000296
    • 2009-06-03
    • Joost Christiaan StormAndreas Ten CateIngo Günther KröpflAchim Bürger
    • Joost Christiaan StormAndreas Ten CateIngo Günther KröpflAchim Bürger
    • B22D11/00B22D19/00
    • B22D19/16B22D11/008B22D19/0081B22D19/08B22D19/085
    • Method and apparatus employing a casting mould including a liquid feed end for supplying the casting mould with molten second alloy and an exit end with an outlet for casting molten second alloy downwardly. While continuously moving the mould and an elongated solid first alloy substrate relative to one another, casting molten second alloy passes downwardly through at least one outlet of the mould onto an upper surface of the substrate at a temperature wherein the substrate locally at least partly remelts beginning at a reference point of a remelting zone and mixes at least partly with molten second alloy to form an alloy pool. After remelting the molten alloy pool continuously cools and solidifies at a location away from the reference point and joins the substrate to form composite ingot including at least two separately formed layers of one or more alloys before discharging from the mould.
    • 使用包括用于向铸模供应熔融的第二合金的液体进料端和具有用于向下铸造熔融的第二合金的出口的出口端的铸模的方法和装置。 当模具和细长的固体第一合金基底相对于彼此连续移动时,铸造熔融的第二合金在其中基材局部至少部分地重熔开始的温度下向下通过模具的至少一个出口到基底的上表面 在重熔区的参考点处,并且至少部分地与熔融的第二合金混合以形成合金池。 再熔熔融合金池在离基准点的位置连续地冷却和固化,并且在从模具排出之前,将衬底接合以形成包括至少两个单独形成的一种或多种合金层的复合锭。
    • 9. 发明授权
    • Method for manufacturing a wrought metal plate product having a gradient in engineering properties
    • 具有工程性质梯度的锻造金属板制品的制造方法
    • US08152943B2
    • 2012-04-10
    • US12234632
    • 2008-09-20
    • Andreas ten CateSunil KhoslaAchim BüergerSabine Maria Spangel
    • Andreas ten CateSunil KhoslaAchim BüergerSabine Maria Spangel
    • C21D9/00C22F1/04C21D1/62
    • C22F1/04C22C21/00
    • Manufacturing heat-treatable wrought metal plate having length, width and thickness directions and an engineering properties gradient along at least one plate dimension. Rolled, extruded or forged wrought metal plate is solution heat treated and rapidly cooled. The cooled plate is aged by heat treatment for time to arrive at different tempers across at least one plate dimension (length or width). Controlled heat-input into the plate along its length direction raises plate temperature above ambient temperature to temperature T1, and a temperature gradient is applied between temperature T2 and T3, wherein T2>T3, across at least one direction of the plate by controlled heat-input into the plate from one side (width or thickness) of the plate to temperature T2 and controlled cooling to temperature T3 from the plate at the opposite side of the controlled heat-input, and ageing the plate while applying the temperature gradient between T2 and T3.
    • 制造具有长度,宽度和厚度方向的可热处理锻造金属板,以及至少一个板尺寸的工程性质梯度。 轧制,挤压或锻造的锻造金属板进行固溶热处理并快速冷却。 冷却板通过热处理时间达到不同的温度,穿过至少一个板尺寸(长度或宽度)。 沿着其长度方向对板进行受控热输入将板温度升高到环境温度至温度T1,并且通过受控制的热处理在板的至少一个方向上在T2和T3之间施加温度梯度,其中T2> T3, 从板的一侧(宽度或厚度)到温度T2输入到板中,并从受控热输入的相对侧的板控制冷却到温度T3,并且在施加T2和T2之间的温度梯度的同时老化板 T3。