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    • 3. 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.
    • 7. 发明专利
    • INCLINED AND FORWARDING DEVICE FOR TRENCHER
    • JPS5530011A
    • 1980-03-03
    • JP10077978
    • 1978-08-18
    • KATAYAMA SEISAKUSHO
    • KATAYAMA KEIJIROU
    • E02F5/14E02F3/08
    • PURPOSE:Support bars are installed in a rotary axis of two wheels at one side which is supported on a machine frame via oscilating arm, an oscilating arm for the excavator and an oscilation amgle adjustor are pivotably supported on the supoort bars and thereby enable an excavation at a desired depth. CONSTITUTION:The lever 9 is pulled out of the stopper 11 while the trencher 1 is tracted backward, the lever is inclined by an angle of theta1 and engaged with the bolt 13, thereafter the excavator 4 is lowered down to the position b to excavate a running groove having a desired depth. When the rear wheels 2 are entered in the groove and the lever is inclined in an opposite direction by an angle of theta2 and engaged with the bolt 14, the excavator is lifted up to the position C and then excessive excavation may be prevented. Upon entering of the front wheels 3 into the groove, the lever is disengaged, the lever is pulled into the stopper by the spring 10 and then the excavator is returned the position a. Subsequently, its horizontal orientation is kept and in turn when it is desired to lift up or descend the excavator in reference to a condition of the ground surface, it is preferable to provide a fine adjustment by the handle 12.
    • 10. 发明专利
    • MACHINING AND WORKING METHOD
    • JPH0724685A
    • 1995-01-27
    • JP17173893
    • 1993-07-12
    • SATO GENICHIKATAYAMA SEISAKUSHOSHINNAGOYA KIKAI SHOJI KK
    • SATO GENICHI
    • B23Q11/10
    • PURPOSE:To concurrently realize cooling an article-to-be-machined and a tool, removing a work chip, and giving lubricity to a work surface by jetting out liquid in a condition where surrounding air is adjunctively sucked from one end side of the fog-state body jetting nozzle of a gas jetting part to amplify a flow rate from the other end side. CONSTITUTION:At the time of working an article-to-be-machined in a machining center, when air is supplied to an air supply line 10 and also given liquid (water, oil, and emulsion etc.) is supplied to a liquid supply line 12, a fog-state body jetted from the liquid jetting part 12a of a fog-state body jetting nozzle 11 is jetted in a condition mixed with compressed air. At that time, since surrounding air is sucked in the nozzle inside from a tapered-state opening 20 provided on the end part of the jetting nozzle 11, the fog-state body is discharged in a condition where the fog-state body is amplified into a large flow rate from an outlet 14. The flow of this discharged fog-state body has strong thrust and strongly strikes a surface-to-be-worked and the working surface of a working tool 4 pressure-contacted to the surface-to-be-worked, effectively blowing off a chip, etc.