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    • 1. 发明专利
    • CLOSING DEVICE FOR END PART OF DECKPLATE
    • JPS62107826A
    • 1987-05-19
    • JP24716785
    • 1985-11-06
    • NIPPON STEEL METAL PRODAIKOO SEIKI KK
    • OKAMOTO TOSHIOIWASA YOSHIAKIMIYATA TOSHIYUKI
    • B21D19/08B21D19/00B21D47/00
    • PURPOSE:To obtain a fixed end part closing shape without causing the crack on a deckplate by providing an optional slope on the lower side end face of a backplate and by abutting the claw which is supported by a pin to the elliptic groove of a punch to the slope. CONSTITUTION:The upper blade 20 and punch 15 are provided together on the upper part holder 14 and the elliptic groove 27 to which the necessary length is given is grooved on the punch 15. An optional slope Q is provided on the lower side end face of the back plate 18 and the L-shaped claw 16 which is supported by a pin 19 to the elliptic groove 25 of the punch 15 is abutted to the slope Q. The whole body of the upper part die descends simultaneously with the descent of a press ram and gives a predeformation to the flange part of the deckplate. The crushing of the crest pat of the deckplate is started by the punch 15 after the descent of the projection of the claw 16. The claw 16 moves the elliptic groove 27 to the upper part simultaneously with its returning to the vertical state by receiving the skew by the punch 15 with the pin 19 as the fulcrum. The claw 16 performs the closing work of the deckplate by receiving the load of the upper part holder 14.
    • 2. 发明专利
    • CLOSING METHOD FOR END PART OF DECKPLATE
    • JPS62107825A
    • 1987-05-19
    • JP24716685
    • 1985-11-06
    • NIPPON STEEL METAL PRODAIKOO SEIKI KK
    • OKAMOTO TOSHIOIWASA YOSHIAKIMIYATA TOSHIYUKI
    • B21D19/08E04B5/40
    • PURPOSE:To obtain a fixed end part closing shape without causing any crack by performing the inner bending predeformation by a claw-shaped projection on the flange part of a deckplate, then by crushing it upto the root face bottom part with a press die. CONSTITUTION:The whole upper die body is descended simultaneously with the descent of a press ram and the projection of a claw 16 gives a predeformation on the flange pat of the deckplate by descending upto a point (b) by coming in touch with the point (a) of the flange part of the deckplate. After descent of the projection of the claw 16 to the point (b) the crushing of the crest part of the deckplate by the punch 15 is started. Simultaneously with this, a cam 6 is descended according to the groove of the cam guide, but the predeformation function is dissipated with the cam 6 escaping in the arrow mark direction by the dislocation allowance. The claw 16 moves to the upper part the elliptic groove 27 provided on the punch 15 simultaneously with being returned to the vertical state by receiving the skew by a pump 15. The claw 16 performs the closing of the deckplate by receiving the load of the upper part holder 14.
    • 3. 发明专利
    • METHOD FOR AUTOMATIC FORMING OF FOOD
    • JPS6070055A
    • 1985-04-20
    • JP17998583
    • 1983-09-27
    • AIKOO SEIKI KK
    • OOUCHI SHIROU
    • A23L1/00A23L17/00A23P1/00A23P1/08A23P1/10A23P1/12
    • PURPOSE:To enable the forming of a food having uniform density and weight, in high efficiency, by rolling a food raw material with a flat belt between a pair of rolling rollers by the relaxation of the flat belt and the own weight of the material, and rotating the material by the transfer of the flat belt. CONSTITUTION:A pair of freely rotatable rolling rollers 1, 5 arranged in parallel interposing a proper gap therebetween are made to contact with the lower surface of the flat belt 3 which can be stretched and relaxed. The material is dangled together with the flat belt between the rollers 1, 5 by the relaxation of the flat belt 3 and the own weight of the materials (a)-(c). Corresponding to the above process, the gap between the rollers 1, 5 is narrowed and fixed, and thereafter, only the flat belt 3 is transferred to a definite direction to effect the rotation of the material to the opposite direction and the forming of the material in the form of the objective food. In contrast to the conventional hand-forming process, the forming can be carried out efficiently with a compact apparatus and simple operation, and a food having uniform density and weight and an arbitrary form can be prepared by this process.