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    • 17. 发明授权
    • Wheel spindle device for grinding machine
    • 磨床用主轴装置
    • US07824246B2
    • 2010-11-02
    • US12131593
    • 2008-06-02
    • Tomohiro InagakiTomoyasu ImaiTakayuki MorotoShinji Soma
    • Tomohiro InagakiTomoyasu ImaiTakayuki MorotoShinji Soma
    • B24B49/00
    • B24D5/10B24B19/12
    • In a wheel spindle device wherein a plurality of grinding wheels are attached in a juxtaposed relation to a wheel spindle rotatably carried on a wheel head of a grinding machine, a reference position for specifying a position in the circumferential direction of the grinding wheel is provided on a core member of each of the grinding wheels, and a plurality of inclined grooves at predetermined angular intervals are formed on a grinding surface of each grinding wheel to be inclined relative to the circumferential direction of each grinding wheel. In order that the fluctuations in the dynamic pressure and the grinding resistance between respective grinding wheels and workpiece portions ground therewith do not grow as a combined or synergy effect, the inclined grooves on each grinding wheel are shifted in angular phase from those on another grinding wheel, so that grinding efficiency and accuracy can be enhanced.
    • 在一种车轮主轴装置中,其中多个砂轮以可旋转地承载在研磨机的轮头上的车轮主轴并置安装,用于指定砂轮周向位置的基准位置设置在 每个砂轮的芯构件和预定角度间​​隔的多个倾斜槽形成在每个砂轮的研磨表面上,以相对于每个砂轮的圆周方向倾斜。 为了使相应的研磨轮和与其接触的工件部分之间的动态压力和耐磨性的波动作为组合或协同效应不增长,每个砂轮上的倾斜槽与另一个砂轮上的倾斜槽相位移动 ,从而可以提高研磨效率和精度。
    • 19. 发明申请
    • GRINDING METHOD AND GRINDING MACHINE
    • 研磨方法和研磨机
    • US20070232192A1
    • 2007-10-04
    • US11688990
    • 2007-03-21
    • Shinji SomaHiroshi Morita
    • Shinji SomaHiroshi Morita
    • B24B1/00B24B51/00B24B49/00
    • B24B5/42B24B1/00B24B5/01B24B5/04
    • A grinding method of a rotating workpiece W having a cylindrical part 20 and a pair of end faces 21 at both sides of the cylindrical part 20 uses a grinding wheel 10 whose grinding stone is narrower than a finishing width S1 between the end faces 21. In a first grinding step, the grinding wheel 10 is relatively moved to the cylindrical part 20 in a direction crossing the rotational axis of the workpiece W and is shuttled along the rotational axis of the workpiece W at least one time between the finishing width S1 of the end faces 21 until the grinding wheel 10 reaches the cylindrical part. And in a second grinding step, the grinding wheel 10 is moved from one of the end faces 21 to the opposite end face 21 on the cylindrical part 20, so as to finish the end faces 21 to a predetermined width S1.
    • 在圆筒部20的两侧具有圆筒部20和一对端面21的旋转工件W的研磨方法使用研磨轮10,其研磨砂比端面21之间的精加工宽度S1窄。 在第一研磨步骤中,砂轮10沿与工件W的旋转轴线交叉的方向相对移动到圆筒形部件20,并且沿着工件W的旋转轴线在精加工宽度S1之间至少一次 直到砂轮10到达圆柱形部分。 并且在第二研磨工序中,砂轮10从圆筒部20的端面21之一向相对端面21移动,使端面21成为规定的宽度S1。