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    • 2. 发明申请
    • THERMOPLASTIC RESIN-COATED METAL PLATE, AND METHOD OF AND APPARATUS FOR MANUFACTURING THE SAME
    • 热塑性树脂涂层金属板及其制造方法和装置
    • WO1997044190A1
    • 1997-11-27
    • PCT/JP1997001739
    • 1997-05-23
    • TOYO KOHAN CO., LTD.TANAKA, AtsuoSAKAMOTO, YoshikiKAGUMA, Noriaki
    • TOYO KOHAN CO., LTD.
    • B32B15/08
    • B32B15/09B32B15/08B32B27/36B32B27/365B32B37/04B32B38/18B32B2309/06B32B2367/00B32B2369/00Y10S428/91Y10T156/1712Y10T156/1741Y10T428/24942Y10T428/31507Y10T428/31681Y10T428/31786
    • A resin-coated metal plate having a high processing adhesion, a high corrosion resistance and a high impact resisting processability, a resin-coated metal plate capable of being manufactured continuously at a high speed, and free from the fluctuation of properties even when a feed rate of a metal plate is varied, and a method of and an apparatus for manufacturing such resin-coated metal plates are provided. A belt type metal plate fed continuously is heated, and resin films are laminated on both surfaces of the resultant metal plate by pressure-bonding the former to the latter by using a pair of laminating rolls. The moving direction of the resin-coated metal plate is then deflected by using a deflector roll provided so that the deflector roll can be moved in the direction perpendicular to the moving direction of the metal plate, whereby a difference is generated between the time at which one surface of the resin-coated metal plate contacts the relative laminating roll and the time at which the other surface of the resin-coated metal plate contacts the relative laminating roll. Thus, the calorific values taken out from the two surfaces of the resin-coated metal plate due to the cooling effect produced when these surfaces contact the laminating rolls are rendered different, and the orientation of the laminated resin films is thereby controlled to a desired condition.
    • 具有高加工粘合性,高耐腐蚀性和高耐冲击加工性的树脂涂覆金属板,能够高速连续制造并且即使在进料时也不具有特性波动的树脂涂覆金属板 改变了金属板的速度,并且提供了这种树脂涂覆的金属板的制造方法和装置。 将连续供给的带式金属板加热,通过使用一对层压辊将前者与后者压接在所得金属板的两个表面上层压树脂膜。 然后通过使用偏转辊来使树脂涂覆的金属板的移动方向偏转,使得偏转辊可以在垂直于金属板的移动方向的方向上移动,由此在其之间产生差异 树脂涂覆的金属板的一个表面与相对层压辊接触,并且树脂涂覆的金属板的另一个表面与相对层压辊接触的时间。 因此,由于当这些表面与层压辊接触时产生的冷却效果,从树脂涂覆的金属板的两个表面取出的热值变得不同,因此将层压树脂膜的取向控制到所需条件 。