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    • 2. 发明专利
    • Insulated cable and its manufacturing method
    • 绝缘电缆及其制造方法
    • JP2005259419A
    • 2005-09-22
    • JP2004066892
    • 2004-03-10
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • YAMAGATA YOSHIKAZU
    • H01B7/02H01B7/00H01B13/00H01B13/14H01B13/16
    • PROBLEM TO BE SOLVED: To provide an insulated cable with no possibility of separation of film since in the conventional insulated cable having an insulating film of two or more layers, interfaces exist between each film, therefore separation due to the effect of difference of coefficient of thermal shrinkage of each film and mechanical force such as stranding, twisting, bending, and expansion work was easily brought about.
      SOLUTION: This is the insulated cable in which the insulating film applied on the conductor is constructed of at least two kinds or more of resin components and the interfaces of the two or more resins have no clear interfaces and have an interface in which the concentration of resin components varies continuously or step-wise, and its manufacturing method is provided.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供绝缘电缆,不可能分离膜,因为在具有两层或更多层的绝缘膜的传统绝缘电缆中,每个膜之间存在界面,因此由于差异的影响而分离 的每个膜的热收缩系数和机械力如绞合,扭曲,弯曲和膨胀工作容易产生。

      解决方案:这是绝缘电缆,其中施加在导体上的绝缘膜由至少两种或更多种树脂组分构成,并且两种或更多种树脂的界面没有明确的界面,并且具有界面 树脂组分的浓度连续变化或逐步变化,并且提供其制造方法。 版权所有(C)2005,JPO&NCIPI

    • 7. 发明专利
    • LUBRICATED STEEL PLATE AND PRODUCTION THEREOF
    • JPH0790288A
    • 1995-04-04
    • JP23767693
    • 1993-09-24
    • MATSUSHITA ELECTRIC IND CO LTD
    • YAMAGATA YOSHIKAZU
    • B21D22/20C10M105/76C10N30/08C10N40/24C10N70/00
    • PURPOSE:To obtain a lubricated steel plate wherein lubricating-film molecules are strongly bound on surface molecules of the steel plate, the film is free from peeling during processing and the film, which is ultra thin, has uniform thickness and accordingly the plate steel can be processed without using coating oil, by fixing the lubricating film to the surface of the steel plate through the siloxane bonds with the surface molecules of the steel. CONSTITUTION:Lubricating film molecules 3 are bound on the surface of a steel plate 1 through siloxane bonds 2. In the figure, the lubricating film 4 is expressed by siloxane bonds 2 and lubricating-film molecules 3. The lubricating-film molecules 3 consist of chlorosilane surfactant. The steel plate is immersed in a nonaqueous solution of the chlorosilane surfactant or it is placed in a gas phase in which chlorosilane is vaporized and it is made to contact with chlorosilane molecules. By this treatment, hydrophilic groups on the surface of the steel plate react with the chlorosyl groups of the film molecules under dehydrochlorination and the lubricating film is formed on the surface of the steel plate through siloxane bonds.