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    • 82. 发明申请
    • Sequential casting of metals having the same or similar co-efficients of contraction
    • 具有相同或相似收缩系数的金属的连续铸造
    • US20090056904A1
    • 2009-03-05
    • US12220954
    • 2008-07-29
    • Robert Bruce WagstaffTodd F. Bischoff
    • Robert Bruce WagstaffTodd F. Bischoff
    • B22D11/04B22D7/08
    • B22D11/007
    • A method and apparatus is disclosed for casting metals in a DC mold to form an ingot or product having at least two layers formed by sequential solidification. The apparatus has at least one cooled divider wall at the entry end portion of the mold to divide the entry end portion into at least two feed chambers. Metal is fed to the chambers to form an inner layer and at least one outer layer. The divider wall has a metal-contacting surface for contacting the metal for the at least one outer layer, the surface being arranged at an angle sloping away from the metal for the outer layer in a downward direction. The angle is larger at the center of the divider wall compared to the angle adjacent to each longitudinal end thereof. The apparatus is suitable for co-casting metals having similar coefficients of contraction to minimize problems of adhesion between the layers of a resulting ingot or rolled products produced therefrom.
    • 公开了一种用于在DC模具中铸造金属以形成具有通过连续凝固形成的至少两层的锭或产品的方法和装置。 该装置在模具的入口端处具有至少一个冷却的分隔壁,以将入口端部分分成至少两个进料室。 将金属进料到室以形成内层和至少一个外层。 分隔壁具有用于接触用于至少一个外层的金属的金属接触表面,该表面布置成在向下的方向上以远离外层金属的方式倾斜。 与分隔壁的每个纵向端相邻的角度相比,分隔壁的中心处的角度较大。 该装置适合共铸具有相似收缩系数的金属,以最小化由此产生的铸锭或轧制产品的层之间的粘合问题。
    • 88. 发明授权
    • Method of manufacturing a multi-layer amorphous alloy
    • 制造多层非晶合金的方法
    • US4428416A
    • 1984-01-31
    • US505121
    • 1983-06-21
    • Senji ShimanukiKoichiro Inomata
    • Senji ShimanukiKoichiro Inomata
    • B22D11/00B22D11/06B22D19/14B23K20/04B23P15/00C22C45/00
    • B22D19/14B22D11/007B22D11/06B23K20/04B23P15/00C22C45/00Y10S505/915
    • A method for manufacturing a multi-layer amorphous alloy having at least one layer of amorphous alloy, comprises the steps of ejecting a first molten metal on one of a pair of rollers rotating at a high speed, and rotating the ejected metal with the roller in a shape of a layer for rapid cooling; forming two molten metal layers on the rotating roller or belt by ejecting a second molten metal different from the first metal on the first molten metal for rapid cooling; and adhering under pressure and rolling the molten metal layers between the pair of rollers; and the method of the present invention is applicable to the manufacture of multi-layer alloys which may be used as various composite alloy materials such as high-sensitivity bimetals, superconductive wires, contact spring composite alloys, latching relays having two-stepped magnetic hysteresis, and high fidelty magnetic heads.
    • PCT No.PCT / JP80 / 00080 Sec。 371日期1980年12月8日第 102(e)日期1980年12月8日PCT申请日1980年4月21日PCT公布。 出版物WO80 / 02242 1980年10月30日。一种制造具有至少一层非晶态合金的多层非晶态合金的方法,包括以下步骤:将第一熔融金属喷射在一对高速旋转的辊中,旋转 喷射的金属与辊子形成一层,用于快速冷却; 通过喷射与第一熔融金属上的第一金属不同的第二熔融金属来快速冷却,在旋转辊或带上形成两个熔融金属层; 并在压力下粘合并在一对辊之间滚动熔融金属层; 本发明的方法可应用于可用作各种复合合金材料的多层合金的制造,例如高灵敏度双金属,超导电线,接触弹簧复合合金,具有两级磁滞的闭锁继电器, 和高保真磁头。