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    • 2. 发明授权
    • Process for producing substrate of optical disc
    • 制造光盘基片的方法
    • US4961884A
    • 1990-10-09
    • US387661
    • 1989-07-31
    • Seiichi WatanabeYusuke IshiharaTadashi Irie
    • Seiichi WatanabeYusuke IshiharaTadashi Irie
    • B29C45/37B29C45/26B29L17/00G11B7/26
    • B29C45/263B29C45/43Y10S425/81
    • An improved injection molding process for producing a substrate of an optical disc having a high quality is disclosed. The process includes the steps of: fixing a stamper having protrusions corresponding to pits for recorded information or a groove for tracking onto one mold unit of a pair of mold units of an injection molding machine; combining the mold units to form a closed cavity between the pair of mold units; charging a molten molding resin into the cavity; cooling the resin in the cavity to form a molded substrate; separating one mold unit from another mold unit; and releasing the molded substrate simultaneously from both mold units when the two mold units are separated from each other by applying pressurized air onto both sides of the substrate.
    • 公开了一种用于制造具有高质量的光盘的基板的改进的注射成型方法。 该方法包括以下步骤:将具有与用于记录信息的凹坑相对应的突起的压模或用于跟踪的凹槽固定到注射成型机的一对模具单元的一个模具单元上; 组合所述模具单元以在所述一对模具单元之间形成封闭空腔; 将熔融成型树脂装入空腔中; 冷却空腔中的树脂以形成模塑基材; 将一个模具单元与另一个模具单元分离; 并且当两个模具单元通过在基板的两侧上施加加压空气而彼此分离时,从两个模具单元同时释放模制基板。
    • 5. 发明授权
    • Method for producing electrically-conducting material with modified surface
    • 具有改性表面的导电材料的制造方法
    • US09034148B2
    • 2015-05-19
    • US13819121
    • 2011-08-26
    • Masayasu NagoshiKaoru SatoSeiichi WatanabeSouki Yoshida
    • Masayasu NagoshiKaoru SatoSeiichi WatanabeSouki Yoshida
    • C25D5/10C25D5/16C23C26/00C25F1/00C25F3/00
    • C25D5/16C23C26/00C25F1/00C25F3/00
    • A method to inexpensively and efficiently produce conductive materials on the surface of which a nano-level fine structure is formed includes surface modification including immersing a stable anode electrode and a workpiece as a cathode electrode, the workpiece including a conductive material with a work surface, in an electrolytic solution, then applying a voltage not less than a first voltage and less than a second voltage between the stable anode electrode and the workpiece as the cathode electrode immersed in the electrolytic solution, thereby modifying the work surface, the first voltage being a voltage corresponding to a current value that is ½ of the sum of a first maximum current value appearing first in a positive voltage region and a first minimum current value appearing first in the positive voltage region with respect to voltage-current characteristics of a surface modification treatment system, the second voltage exhibiting a complete-state plasma.
    • 在其上形成纳米级精细结构的表面上廉价有效地制造导电材料的方法包括表面改性,包括浸渍稳定的阳极电极和工件作为阴极,工件包括具有工作表面的导电材料, 在电解液中,在浸渍在电解液中的阴极电极之间施加稳定的阳极和工件之间的不小于第一电压和小于第二电压的电压,从而改变工作表面,第一电压为 对应于相对于表面改性处理的电压 - 电流特性,正电压区域中首先出现的第一最大电流值和正电压区域中首先出现的第一最小电流值之和的电流值的1/2的电压 系统,第二电压呈现完全状态的等离子体。