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    • 88. 发明申请
    • POWER SUPPLY FOR ANODIZING, ANODIZING METHOD, AND ANODIZED FILM
    • 电源用于ANODIZING,ANODIZING方法和阳极化膜
    • US20120000784A1
    • 2012-01-05
    • US13254187
    • 2010-03-02
    • Yong-Bong Shin
    • Yong-Bong Shin
    • C25D11/04C25B15/02C25B9/00
    • C25D11/005C25D11/024
    • An anodizing method for growing an anodized layer on a surface of aluminum in electrolyte is disclosed. The method comprises applying a DC/AC-combined pulse wave between an anode and a cathode. The DC/AC-combined pulse wave is provided by combining a DC pulse wave with an AC wave, and has a peak voltage at a start point of each pulse. The grown anodized layer may be equal to or less than 300 μm in thickness, and the diameter of a cell in the anodized layer may range between 50 nm and 100 nm. The power supply used for anodizing may comprise a rectifying modulator unit, an AC modulating unit, a pulse wave synthesizing unit, and a control unit.
    • 公开了一种用于在电解质中的铝表面上生长阳极氧化层的阳极氧化方法。 该方法包括在阳极和阴极之间施加DC / AC组合的脉冲波。 DC / AC组合脉冲波通过将DC脉冲波与AC波组合而提供,并且在每个脉冲的起始点具有峰值电压。 生长的阳极氧化层的厚度可以等于或小于300μm,并且阳极氧化层中的电池的直径可以在50nm和100nm之间。 用于阳极氧化的电源可以包括整流调制器单元,AC调制单元,脉波合成单元和控制单元。
    • 90. 发明申请
    • ANODIC OXIDE COATING AND ANODIZING OXIDATION METHOD
    • 阳极氧化涂层和阳极氧化方法
    • US20100243457A1
    • 2010-09-30
    • US12728450
    • 2010-03-22
    • Masahiro FujitaTomoharu YamamotoHiroomi Tanaka
    • Masahiro FujitaTomoharu YamamotoHiroomi Tanaka
    • B32B15/04C25D11/04
    • C25D11/04C25D11/024C25D17/12
    • An anodic oxide coating has fewer irregularities and has a nonuniform film thickness, and an anodic oxidation method yields the coating. Specifically, an anodic oxidation method of an aluminum or aluminum alloy member applies a voltage to a process component immersed in a processing bath, the process component made of any of aluminum and aluminum alloy members containing at least any of an impurity and an additive. The method includes disposing a pair of negative plates so that the negative plates face the process component; and repeatedly performing a process of applying a positive voltage to the process component and a process of removing charges by using a power supply apparatus including an anodizing direct-current power source, a discharge direct-current power source, a switch configured to connect the process component and the pair of negative plates to any one of terminals of the anodizing direct-current power source and the discharge direct-current power source, the terminals having polarities opposite to each other, and capacitors and regeneration circuits connected to the respective power sources in parallel to the process component and the pair of negative plates.
    • 阳极氧化物涂层具有更少的不规则性并且具有不均匀的膜厚度,并且阳极氧化方法产生涂层。 具体地说,铝或铝合金部件的阳极氧化方法对浸渍在加工槽中的工艺部件施加电压,所述工艺部件由含有至少任意一种杂质和添加剂的铝和铝合金部件中的任何一种制成。 该方法包括设置一对负极板,使得负极板面对工艺部件; 并且重复地执行向处理部件施加正电压的处理以及通过使用包括阳极氧化直流电源,放电直流电源,被配置为连接该过程的开关的电源装置来去除电荷的处理 阳极氧化直流电源和放电直流电源的端子中的任一个的负极板和负极板,具有彼此相反的极性的端子,以及连接到各个电源的电容器和再生电路 平行于工艺部件和负极板。