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    • 6. 发明授权
    • Process for manufacturing electro-galvanized steel strip
    • 电镀锌钢带生产工艺
    • US4325790A
    • 1982-04-20
    • US231131
    • 1981-02-03
    • Takeshi AdaniyaMasaru Ohmura
    • Takeshi AdaniyaMasaru Ohmura
    • C25D5/26C25D3/56C25D5/08C25D7/06C25D21/10
    • C25D5/08C25D3/565C25D7/0685
    • In a process for manufacturing an electro-galvanized steel strip, which comprises: moving a steel strip in an acidic electro-galvanizing bath containing cobalt and chrominum in parallel with the plane of at least one anode plate to subject said steel strip to an electro-galvanizing treatment, thereby forming, on at least one surface of said steel strip, an electro-galvanized layer excellent in bare corrosion resistance and corrosion resistance after chromating; the improvement characterized by: keeping the cobalt content in said electro-galvanizing bath within the range of from 8 to 30 g/l, as converted into metallic cobalt, the chromium content in said electro-galvanizing bath within the range of from 0.1 to 1.5 g/l, as converted into metallic chromium, and the temperature of said electro-galvanizing bath within the range of from 35.degree. to 60.degree. C.; and, flowing said electro-galvanizing bath between said steel strip and said anode plate at a flow velocity of at least 0.35 m/sec in a direction at right angles to the travelling direction of said steel strip.
    • 一种电镀锌钢带的制造方法,其特征在于,包括:使含有钴和铬的酸性电镀浴中的钢带与至少一个阳极板的平面平行地移动, 镀锌处理,从而在所述钢带的至少一个表面上形成镀铬后的耐腐蚀性和耐腐蚀性优异的电镀锌层; 其特征在于:将所述电镀浴中的钴含量保持在8至30g / l的范围内,转化为金属钴,所述电镀浴中的铬含量在0.1至1.5的范围内 g / l,转化为金属铬,所述电镀浴的温度在35〜60℃的范围内。 并且在所述钢带和所述阳极板之间以与所述钢带的行进方向成直角的方向以至少0.35m / sec的流速流动所述电镀浴。
    • 10. 发明授权
    • Magnetic force sealant for plating tank
    • 镀槽磁力密封剂
    • US3939799A
    • 1976-02-24
    • US488056
    • 1974-07-12
    • Shigeo KanbaraTakeshi Adaniya
    • Shigeo KanbaraTakeshi Adaniya
    • C23C2/00C23C2/14C23C2/24C23C2/38C23C2/40B05C5/02
    • C23C2/38C23C2/24
    • There is provided a molten metal plating method and apparatus wherein at each of the strip feeding and discharging ends of a horizontal molten metal plating tank arranged in a horizontal strip pass line, each of a current and a magnetic field which intersect each other at right angles is applied in a direction perpendicular to the direction of travel of a steel strip to apply to the molten metal at each end an electromagnetic force which is directed toward the inside of the plating tank, whereby by adjusting the intensity of the magnetic field or the amount of the current, the run-out or leakage of the molten metal from the strip feeding and discharging ends of the plating path is reduced to zero or controlled to a desired value. The effect of this is that the molten metal is effectively prevented from leaking out at the strip feeding end of the plating tank, while at the discharging end of the tank the coating thickness or the weight of coating on the plated strip is controlled, and a horizontal linear coating line is provided thus making the plating of heavy-gauge steel strip or plate and the application of thicker coatings possible.
    • 提供了一种熔融金属电镀方法和装置,其中,在水平条带通过线中设置的水平熔融金属镀槽的每个带材进给和排出端处,每个电流和磁场彼此以直角相交 沿垂直于钢带行进方向的方向施加,以在每端向熔融金属施加指向电镀槽内部的电磁力,由此通过调节磁场的强度或量 当前,熔融金属从电镀通道的带材进给和排出端的流出或泄漏减少到零或控制到所需的值。 这样做的效果是,有效地防止熔融金属在镀槽的带材进料端泄漏,而在罐的排放端处,涂层厚度或镀层的涂层重量受到控制, 提供了水平线性涂层生产线,因此可以对厚钢带或板进行电镀,并且可以使用较厚的涂层。