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    • 2. 发明专利
    • TURNING TOOL
    • JPS6268205A
    • 1987-03-28
    • JP20164585
    • 1985-09-13
    • NACHI FUJIKOSHI CORPKAWASAKI STEEL COHITACHI SEIKI KK
    • KITAYAMA YASUSHIMINAMI MASAJIYAMAMOTO TAKESHIMACHII FUJIO
    • B23B27/06
    • PURPOSE:To generate a flow of cut chips in a separating direction for every cutting edge and to increase a tool life, by providing a primary cutting edge and a secondary cutting edge while the secondary cutting edge, which forms an obtuse angle coming into contact with said primary cutting edge, in a general forming tool and forming each cutting edge to be tilted by a different twist angle with respect to the axial line. CONSTITUTION:A general forming tool 13 comprises a primary cutting edge 1 and a secondary cutting edge 2 forming an obtuse angle. The primary cutting edge 1 is arranged so as to provide a suitable twist angle theta1 with respect to the axial line 12 of a fixed cylindrical member. The secondary cutting edge 2 is tilted by a twist angle theta2 larger than the above described twist angle theta1. The tool 13 is turned along the periphery of a member 5, and if the member 5 is machined, outflow directions 6'', 7'' of cut chips mutually separating are generated, obtaining a smooth flow with no tangle while decreasing also generation of chattering, and a life of the tool can be extended.
    • 4. 发明专利
    • METHOD AND DEVICE FOR PUNCHING STENCIL MATERIAL
    • JPS5524727A
    • 1980-02-22
    • JP9700778
    • 1978-08-09
    • NIPPON REGULATOR KKKAWASAKI STEEL CO
    • KUSASHIRO EISHIROUYAMAMOTO TAKESHISATOU AKIMUNENAKAJI SHIGERU
    • B21D28/36B21D28/00
    • PURPOSE:To provide the subject method and device wherein when a predetermined position of a stencil material intermittently transferred along a punching template fixed and arranged on a straight line has been opposed to the punching template, the punching is carried out, thereby to punch symbols on the stencil material in a desired arrangement easily and at a high speed. CONSTITUTION:Firstly, when a stencil material 14 has been intermittently transferred to line h, aposition of the stencil material 14 to punch ''2'' among an arrangement of symbols 1978625BED is opposed to the position of a punching template 11 of the symbol of ''2''. Since the position is indexed by a preset controller, and an operating device 13 operationally connecting the template 11 of the symbol of ''2'' is operated to punch the symbol of ''2''. Then, the material 14 has been intermittently transferred up to a position shown by line j, a position of the material 14 to punch ''5'' is opposed to the position of the template 11 of ''5'', and ''5'' is punched similarly as described above. Similarly, ''1'' is punched at a position shown by l, and ''6'' at a position shown by line m, hereinafter similarly symbols being punched. Finally, ''9'' is punched at a position shown by line r, and as a whole an arrangement of symbols 1978625BED is punched.
    • 6. 发明专利
    • CUTTING METHOD OF PERIPHERY OF OIL WELL STEEL PIPE UPSET PORTION
    • JPS61209851A
    • 1986-09-18
    • JP4608385
    • 1985-03-07
    • KAWASAKI STEEL CO
    • YAMAMOTO TAKESHI
    • B23Q15/013G05B19/18
    • PURPOSE:To improve the productivity of a steel pipe finishing machine by moving back the steel pipe finishing machine considering the point of time when the detected value of a load current of a motor for rotting a cutting tool coincides with the set value of a no load current as the point of time when clear cutting work has been completed. CONSTITUTION:When a motor 3 for rotting a cutting tool is operated at a fixed rotating speed to move ahead a steel pipe finishing machine 1, and the cutting tool 2 begins to cut the periphery of the upset portion of a steel pipe P, a load current value detected by a current detector 5 rises quickly from a noload current value I0. A cutting work is carried out at a current value I1 corresponding to a cutting load, and the current value returns to the value I0 the at the moment when the cutting work has been completed. When the load current value detected by the current detector 5 becomes equal to the set value of a noload current, a relative computer control section 6 delivers the completed signal of cutting work to a reversible motor 4 for forward and backward movement. The reversible motor 4 is stopped and inversely rotated by the above signal to move back the steel pipe finishing machine 1 to a waiting position. A net cutting hour measured with timer 7 is read out on a recording indicator 8, and the amount of cutting is recorded and indicated, and the length of the upset portion is also controlled.