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    • 4. 发明专利
    • Porous thin article and method for manufacturing the same
    • 多孔薄片及其制造方法
    • JP2010158736A
    • 2010-07-22
    • JP2009001436
    • 2009-01-07
    • Nc Industry Co Ltdエヌシー産業株式会社
    • MURAKAMI YOSHIJI
    • B23B39/08B26F1/16H04R1/02
    • PROBLEM TO BE SOLVED: To provide a porous thin article and its manufacturing method attaining that the durability and reliability of a device used for punching work are high, that a fine hole can be formed as compared with a punching machine, that the intrusion cross section (edge) of the fine hole becomes a right angle edge and a sharp punching shape is obtained not depending on the thickness of a work, that a crack is hardly generated even if a hole pitch is narrow, and that freedom of design as a product is high.
      SOLUTION: Image data are prepared from the drawing visualized by a large number of extremely fine holes formed on the thin work, a punching pattern in which punching holes having different diameters and/or the same diameter are positioned is prepared based on the image data, and the extremely fine holes are formed at respective punching positions in the work according to the punching pattern by drills having diameters corresponding to the respective punching holes using an NC punching work machine.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:为了提供一种多孔薄制品及其制造方法,其中用于冲孔加工的装置的耐久性和可靠性高,与冲孔机相比可以形成细孔, 细孔的入侵截面(边缘)成为直角边缘,并且不依赖于工件的厚度获得尖锐的冲压形状,即使孔间距窄也难以产生裂纹,并且设计自由度 作为产品高。

      解决方案:图形数据是通过在薄工件上形成的大量极细孔而形成的图纸制备的,其中制备了具有不同直径和/或相同直径的冲孔的定位图案,其基于 图像数据,并且通过使用NC冲压加工机具有与各个冲孔相对应的直径的钻头根据冲孔图案在工件中的各个冲压位置处形成极细的孔。 版权所有(C)2010,JPO&INPIT

    • 6. 发明专利
    • DRILLING MACHINE
    • JP2006321033A
    • 2006-11-30
    • JP2005148283
    • 2005-05-20
    • HITACHI VIA MECHANICS LTD
    • YAMADA YUKIHIROBUSUJIMA AKIRANAKAJIMA YOSHIO
    • B23Q15/013B23B39/08H02P29/00
    • PROBLEM TO BE SOLVED: To provide a drilling machine capable of improving drilling speed and having excellent drilling accuracy. SOLUTION: This drilling machine is provided with an X table 7 supporting a workpiece 3 and movable in the horizontal direction on a bed 6, a Y table 107 mounted on a column 17 fixed on an upper surface of the bed 6 and movable in the horizontal direction orthogonal to a moving direction of the X table 7, and a Z table 207 mounted on the Y table 107 and movable in the vertical direction by rotatably supporting a drill 251. The drilling machine performs positioning of each table 7, 107 and 207 by imparting a position command signal to each table 7, 107 and 207, and drills a hole in the workpiece 3 by the drill 251. The drilling machine is provided with an acceleration detecting device 18 to detect acceleration of the X direction of any one of a column 17, the bed 6 or the X table 7. A frequency component fixed in advance is taken out from an acceleration signal of the X direction detected by the acceleration detecting device 18, and a compensation value proportional to the size of the frequency component is fed back to a driving part for driving the X table 7. COPYRIGHT: (C)2007,JPO&INPIT
    • 10. 发明专利
    • INSTRUCTION METHOD OF BORING AND TAPPING MACHINE
    • JPH068019A
    • 1994-01-18
    • JP30229791
    • 1991-10-21
    • KATAYAMA SEISAKUSHO
    • MURASE MASAYUKI
    • B23B39/08B23Q15/00G05B19/42
    • PURPOSE:To carry out program registration of movement position data required for NC control easily and in a short period of time by memorizing a pin spot of beam light projected from an emission means by way of matching it with a target machining position of a work at the time of matching both means for boring and tapping with the target processing position of the work. CONSTITUTION:By controlling movement of a moving part and moving both of boring and tapping means 16, 19 along the processed surface of a work 12, at the time of matching the central points of the both means of boring and tapping 16, 19 with a target machining position of the work 12, a pin spot 13 by beam light 11 S projected from an emission means 8 is matched with the target processing position of the work 12, and pin spot movement position data from a standard point 36 are memorized in a RAM 34. Each of these pin spot movement position data which are memorized is corrected in accordance with eccentric distance between the pin spot central point and the central points of the both boring and tapping processing means 16, 19, and by these corrected movement position data, actual boring and tapping is carried out.