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    • 2. 发明申请
    • Casting composite ingot with metal temperature compensation
    • 铸造复合锭与金属温度补偿
    • US20110198050A1
    • 2011-08-18
    • US12931724
    • 2011-02-09
    • Robert Bruce WagstaffAaron David SindenTodd F. BischoffEric BallJeff McDermott
    • Robert Bruce WagstaffAaron David SindenTodd F. BischoffEric BallJeff McDermott
    • B22D46/00B22D2/00B22D25/02
    • B22D11/007B22D2/006B22D11/182B22D11/202B22D11/22
    • An exemplary embodiment of the invention provides a method of direct chill casting a composite metal ingot. The method involves sequentially casting two or more metal layers to form a composite ingot by supplying streams of molten metal to two or more casting chambers within a casting mold of a direct chill casting apparatus. Inlet temperatures of one or more of the streams of molten metal are monitored at a position adjacent to an inlet of a casting chamber fed with the stream, and the inlet temperatures are compared with a predetermined set temperature for the stream to determine if there is any difference. A casting variable that affects molten metal temperatures entering or within the casting chambers (e.g. casting speed) is then adjusted by an amount based on the difference of the compared temperatures to eliminate adverse casting effects caused by the difference of the inlet temperature and the set temperature. Preferably an adjustment is selected that causes the monitored temperature to approach the set temperature. Another exemplary embodiment provides equipment for operation of the method.
    • 本发明的示例性实施例提供了一种直接冷却铸造复合金属锭的方法。 该方法包括顺序地浇铸两个或更多个金属层以通过将熔融金属流供应到直接冷却铸造设备的铸模内的两个或多个铸造室中而形成复合锭。 一个或多个熔融金属流的入口温度在与流入的流化室的入口相邻的位置处被监测,并且将入口温度与流的预定设定温度进行比较,以确定是否存在 区别。 然后调整影响进入或流入铸造室内的熔融金属温度(例如铸造速度)的铸造变量,该量基于比较温度的差值,以消除由入口温度和设定温度的差引起的不利铸造效应 。 优选地,选择使所监视的温度接近设定温度的调节。 另一示例性实施例提供了用于该方法的操作的设备。
    • 7. 发明授权
    • Casting composite ingot with metal temperature compensation
    • 铸造复合锭与金属温度补偿
    • US08418748B2
    • 2013-04-16
    • US12931724
    • 2011-02-09
    • Robert Bruce WagstaffAaron David SindenTodd F. BischoffEric BallJeff McDermott
    • Robert Bruce WagstaffAaron David SindenTodd F. BischoffEric BallJeff McDermott
    • B22D11/00B22D11/16
    • B22D11/007B22D2/006B22D11/182B22D11/202B22D11/22
    • An exemplary embodiment of the invention provides a method of direct chill casting a composite metal ingot. The method involves sequentially casting two or more metal layers to form a composite ingot by supplying streams of molten metal to two or more casting chambers within a casting mold of a direct chill casting apparatus. Inlet temperatures of one or more of the streams of molten metal are monitored at a position adjacent to an inlet of a casting chamber fed with the stream, and the inlet temperatures are compared with a predetermined set temperature for the stream to determine if there is any difference. A casting variable that affects molten metal temperatures entering or within the casting chambers (e.g. casting speed) is then adjusted by an amount based on the difference of the compared temperatures to eliminate adverse casting effects caused by the difference of the inlet temperature and the set temperature. Preferably an adjustment is selected that causes the monitored temperature to approach the set temperature. Another exemplary embodiment provides equipment for operation of the method.
    • 本发明的示例性实施例提供了一种直接冷却铸造复合金属锭的方法。 该方法包括顺序地浇铸两个或更多个金属层以通过将熔融金属流供应到直接冷却铸造设备的铸模内的两个或多个铸造室中而形成复合锭。 一个或多个熔融金属流的入口温度在与流入的流化室的入口相邻的位置处被监测,并且将入口温度与流的预定设定温度进行比较,以确定是否存在 区别。 然后调整影响进入或流入铸造室内的熔融金属温度(例如铸造速度)的铸造变量,该量基于比较温度的差值,以消除由入口温度和设定温度的差引起的不利铸造效应 。 优选地,选择使所监视的温度接近设定温度的调节。 另一示例性实施例提供了用于该方法的操作的设备。