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    • 4. 发明专利
    • LASER PROCESSING DEVICE
    • JP2010225602A
    • 2010-10-07
    • JP2009067823
    • 2009-03-19
    • JAPAN STEEL WORKS LTD
    • SAZUKA SUKETAKAINAMI TOSHIO
    • H01L21/268B23K26/00B23K26/10B23K26/352H01L21/20H01L21/68
    • PROBLEM TO BE SOLVED: To provide a laser processing device capable of easily and accurately adjusting the flatness of a workpiece bearing board. SOLUTION: The laser processing device includes a plurality of support units which are disposed under the workpiece bearing board to support the workpiece bearing board and can raise and lower a support position, drive units which move the support units up and down, a displacement measuring unit which measures the upper surface shape of the workpiece bearing board, a control unit which controls the drive units and can obtain measurement results from the displacement measuring unit, and a memory unit which stores relation data of the relation between an operation rate of each drive unit and a displacement rate of the workpiece bearing board, based on the displacement of the upper surface shape of the workpiece bearing board resulting from operation of each drive unit. The control unit receives the measurement results from the displacement measuring unit and calculates a displacement rate of the workpiece bearing board, which is to be displaced by operation of each drive unit, in order to adjust the upper surface shape of the workpiece bearing board to give the upper surface shape a given flatness, determines an operation rate of each drive unit referring to the relation data stored in the memory unit, based on the displacement rate, and operates each drive unit based on the operation rate. COPYRIGHT: (C)2011,JPO&INPIT
    • 7. 发明专利
    • GATE CUTTING MECHANISM AND EJECTOR MECHANISM FOR INJECTION MOLDING MACHINE
    • JP2006341445A
    • 2006-12-21
    • JP2005168401
    • 2005-06-08
    • JAPAN STEEL WORKS LTD
    • FUKUSHIGE YOICHI
    • B29C45/38B29C45/40
    • PROBLEM TO BE SOLVED: To precisely control the moving quantities, moving speeds and moving torques of a gate cutting pin on a drive side and an ejector pin on the drive side even during continuous molding. SOLUTION: A gate cutting mechanism 10 is constituted of the support member 14 fixedly provided to a movable platen 3b, the gate cutting plate 18 fixed to the gate cutting pin 12 on the drive side, the nut member 17 fixedly provided to the gate cutting plate 18 and the ball screw member 15 locked with the nut member 17 by its screw part 15a. The ejector mechanism 30 is constituted of the ball screw member 50 locked with the rotary mechanism 51 fixedly provided to the support member 14 and the ejector pin 32 on the drive side fixedly provided to the ball screw member 50. Both mechanisms 10 and 30 are driven by the electromotor 20 fixedly provided to the support member 14 and a training-over transmission 25 having the belt 53 trained over a motor shaft 20a and the respective ball screw members 15 and 50 and rotationally driving the respective ball screw members 15 and 50 in mutually opposite directions. COPYRIGHT: (C)2007,JPO&INPIT