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    • 21. 发明专利
    • Composite machining grinder and machining method using the same
    • 复合加工磨床及其加工方法
    • JP2014083661A
    • 2014-05-12
    • JP2012236136
    • 2012-10-25
    • Mitsui Seiki Kogyo Co Ltd三井精機工業株式会社
    • ISHII TAKEFUMI
    • B24B1/00B23F5/02B23Q3/155B24B25/00B24B41/02B24B45/00
    • PROBLEM TO BE SOLVED: To provide a composite machining grinder capable of all machining operations of performing cylinder grinding, screw grinding and gear grinding by a single apparatus.SOLUTION: A grindstone shaft 124a is suspended and supported in a grindstone head 125b, and a grindstone 116 is attachable to and removable from the grindstone shaft 124a coaxially. The grindstone 116 is rotation-drivable by a spindle motor, and the grindstone shaft 124a is swingable in the Y axis direction of the grindstone head 125b with respect to the grindstone head 125b. A motor for the swinging operation, not illustrated, is provided. Taking the angle when the grindstone shaft 124a coincides with the Z axis as 0 degree for the sake of convenience, and the anticlockwise direction as the forward direction, the swingable angle is e.g. -10 to 90 degree. The swingable angle is, however, not restricted by the condition and may be 0 degree required for circumferential grinding, 90 degree required for gear grinding or -α degree to α degree (e.g. α=10) required for gear grinding.
    • 要解决的问题:提供一种能够通过单个设备进行圆柱磨削,螺旋磨削和齿轮磨削的所有加工操作的复合加工研磨机。解决方案:磨石轴124a悬挂并支撑在磨石头125b中,并且磨石 116可与砂轮轴124a同轴地固定并移除。 磨石116由主轴电机旋转驱动,磨石轴124a相对于磨石头125b在砂轮头125b的Y轴方向上摆动。 提供了未示出的用于摆动操作的电动机。 为了方便起见,将磨石轴124a与Z轴重合为0度的角度,以及作为向前方向的逆时针方向,摆动角度为例如角度。 -10至90度。 然而,摆动角度不受条件限制,圆周磨削需要0度,齿轮磨削需要90度,齿轮磨削需要α度至α度(例如α= 10)。
    • 23. 发明专利
    • GRINDING MACHINE
    • JPH0957603A
    • 1997-03-04
    • JP20629695
    • 1995-08-11
    • NAGASE INTEGREX KK
    • YAMAGUCHI MASAOINOKIHARA OTOKUNI
    • B24B25/00
    • PROBLEM TO BE SOLVED: To achieve space saving in the installation of a grinding machine and reduction of the cost of equipment by performing surface grinding for a work provided with a flat surface to be ground and peripheral surface grinding for a work provided with a surface to be ground on the peripheral surface by one grinding machine. SOLUTION: A grinding wheel 23 provided with a grinding surface 23a on the end surface is rotated around an axis by a grinding wheel rotating mechanism 22. A first work 29 provided with a flat surface to be ground 29a is supported on a first work supporting mechanism 26, the surface to be ground 29a of the first work 29 is made to be brought in pressure-contact with the grinding surface 23a of the grinding wheel 23, and flat surface grinding is performed. A second work 30 provided with a surface to be ground 30a on the peripheral surface is supported on a second work supporting mechanism 27, the surface to be ground 30a of the second work 30 is made to be brought in pressure-contact with the grinding surface 23a of the grinding wheel 23, and peripheral surface grinding is performed.
    • 30. 发明专利
    • POLISHING DEVICE
    • JPH0446758A
    • 1992-02-17
    • JP15419290
    • 1990-06-12
    • OSAKA KIKO CO LTD
    • MATSUSHITA TOSHIHIRO
    • B24B11/00B24B19/02B24B25/00
    • PURPOSE:To make polish processing in a scope drawn by a polishing tool with its locus at any arbitrary radius by furnishing a center rod mounted concentrically with a rotary spindle moving three-dimensionally relative to a working table, providing a working rod at whose tip the polishing tool is mounted, and forming a parallelogram link junction in the form of pantograph from these two rods to constitute a link mechanism. CONSTITUTION:Rotation of a rotary spindle 6 puts a working rod 9 of a link mechanism 7 into circumferential motion round a center rod 8. A polishing tool 14 at the tip of the working rod 9 is contacted with a work to be processed 3, and the rotary spindle 6 is put in relative movement vertically, and now the working rod 9 of the link mechanism 7 slides in the radial direction of the circumferential motion while held in parallel with the center rod. This working rod 9 is energized by an energizing member 15 so as to put the polishing tool 14 mounted at the tip in contact with the work 3 with a specified pressure. If the spindle 6 is rotated while moved vertically, therefore, the polishing tool 14 at the tip of the working rod draws a number of circular loci having different radii and performs polishing in the circular region of the plane or sphere on the surface of the work 3.