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    • 31. 发明授权
    • Electrolytic treatment method
    • 电解处理方法
    • US06340426B1
    • 2002-01-22
    • US09599940
    • 2000-06-23
    • Akio Uesugi
    • Akio Uesugi
    • B41N303
    • B41N3/034C25F3/04C25F7/00
    • An electrolytic treatment method for manufacturing a planographic printing plate support body assures uniform surface-roughening and a predetermined rough surface. Graphite electrodes and an auxiliary electrode are arranged and installed in different electrolytic cells. A current is supplied to the auxiliary electrode by controlling a phase angle of waveforms generated by a power source as symmetrical alternating waveforms. The quantity of electrical power to the auxiliary electrode is set in the range of 0.5% to 9% of the total electrode electric power quantity. In addition, the resistance value of a support roller of an aluminum web is set to 0.01 M&OHgr; or more and the frequency of the symmetrical alternating current waveform is set in the range of 50 Hz to 80 Hz. The current density of the main electrodes is set in the range of 5 A/dm2 to 50 A/dm2.
    • 用于制造平版印刷版支撑体的电解处理方法确保均匀的表面粗糙化和预定的粗糙表面。 石墨电极和辅助电极布置并安装在不同的电解槽中。 通过控制由电源产生的波形的相位角作为对称交替波形,将电流提供给辅助电极。 辅助电极的电力量设定在总电极电力量的0.5%〜9%的范围内。 此外,铝纤维网的支撑辊的电阻值设定为0.01MOMEGA以上,将对称交流波形的频率设定在50Hz〜80Hz的范围内。 主电极的电流密度设定在5A / dm2至50A / dm2的范围内。
    • 33. 发明授权
    • Aluminum support for lithographic printing plate
    • 铝版印刷版支架
    • US5832834A
    • 1998-11-10
    • US888058
    • 1997-07-03
    • Atsuo NishinoKiyotaka FukinoAkio Uesugi
    • Atsuo NishinoKiyotaka FukinoAkio Uesugi
    • B41N1/08B41N3/03B41N3/04C22C21/00C23F1/00C25F3/04C25D11/04
    • B82Y15/00B41N3/034Y10T428/12993
    • An aluminum support for a lithographic printing plate used in off-set printing or the like is disclosed, having a surface shape determined using an atomic force microscope (AFM) such that when measured within the measurement range of 100 .mu.m square with the resolution in the horizontal (X, Y) direction being 0.1 .mu.m, assuming that the surface area obtained by an approximate three-point problem is .alpha. and the upper projected area is .beta., the .alpha./.beta. value (specific surface area) is from 1.15 to 1.5, and when measured within the measurement range of 240 .mu.m square with the resolution in the horizontal (X, Y) direction being 1.9 .mu.m, the average surface roughness is from 0.35 to 1.0 .mu.m and the ratio of the sum of the surface area where the gradient of 30.degree. or more to the total surface area is from 5 to 40%.
    • 公开了一种用于偏移印刷等中使用的平版印刷版的铝载体,具有使用原子力显微镜(AFM)测定的表面形状,使得当在100μm的测量范围内测量时,其分辨率 水平(X,Y)方向为0.1μm,假设由近似三点问题获得的表面积为α,上部投影面积为β,则α/β值(比表面积)为1.15〜 1.5,当在水平(X,Y)方向上的分辨率为1.9μm的测量范围240μm的范围内测量时,平均表面粗糙度为0.35-1.0μm,并且 30°以上的总表面积的梯度为5〜40%的表面积。
    • 36. 发明授权
    • Apparatus and method for anodizing supports for lithographic printing
plate
    • 用于阳极氧化平版印刷版支架的设备和方法
    • US5314607A
    • 1994-05-24
    • US901674
    • 1992-06-22
    • Nobuyoshi KanekoTsutomu KakeiAkio Uesugi
    • Nobuyoshi KanekoTsutomu KakeiAkio Uesugi
    • B41N3/03C25D11/04C25D5/00
    • B41N3/034C25D11/005C25D11/04
    • An apparatus for anodizing a support for a lithographic printing plate which comprises a backing roller which guides a web made of aluminum or an alloy thereof in a state of contacting the backing roller, (an) electrode(s) which is/are arranged along the peripheral surface of the backing roller in a concentric arc, an electric supplier which is provided at least on the upstream side or the downstream side of the backing roller, and an electrolyte solution which fills the clearance between the backing roller and the electrode, and an anodizing method using the same. By using the apparatus, the electric voltage loss can be reduced in electrolyte solution, and only a single surface of the supports is anodized without the necessity for providing any special means. Anodizing can be conducted at a high speed and the thickness of anodized layer easily increased. Moreover, thin supports can be anodized without fusion troubles.
    • 一种阳极氧化用于平版印刷版的支撑体的装置,其包括在与所述背衬辊接触的状态下引导由铝或其合金制成的网的背衬辊,(a)沿着 背衬辊的圆周表面为同心圆弧,至少设置在背衬辊的上游侧或下游侧的供电器以及填充支承辊和电极之间的间隙的电解质溶液,以及 阳极氧化法使用它。 通过使用该装置,可以在电解液中降低电压损失,仅仅支撑体的单个表面被阳极氧化,而不需要提供任何特殊的手段。 阳极氧化可以高速进行,阳极氧化层的厚度容易增加。 此外,薄支撑件可以被阳极氧化而没有融合问题。