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    • 2. 发明申请
    • PRODUCTION MACHINE FOR NON-CIRCULAR WORK PIECES
    • 非圆形工作台生产机
    • US20110138976A1
    • 2011-06-16
    • US13058289
    • 2009-08-07
    • Reiner Jorg
    • Reiner Jorg
    • B23B5/36
    • B23B37/00B23Q11/0035F16F15/073H02K5/24H02K7/02H02K7/08H02K41/031Y10S82/904Y10T82/2533
    • A production machine for non-circular workpieces provided with a tool feed unit (1) comprising a tool carrier (2) for receiving the tool and a compensation body (3) for impulse decoupling. The work movement of the tool carrier (2) can be effected by a drive (4) acting between the tool carrier (2) and the compensation body (3). The tool carrier (2) is supported by rolling bodies (5) and the compensation body (3) is suspended via elastically deformable guide elements (6) at a housing part (7) of the tool feed unit (1). A mass of the compensation body (3) is larger than a mass of the tool carrier (2) carrying the tool so that the working movements of the tool carrier (2) effect compensation strokes of the compensation body (3) that are only within the range of the elastic deformation of the guide elements (6). The guide elements (6) thus effect the guiding and resetting of the compensation body (3).
    • 一种用于非圆形工件的生产机器,其具有工具进给单元(1),该工具进给单元(1)包括用于接收工具的刀架(2)和用于脉冲去耦的补偿体(3)。 工具架(2)的工作运动可以通过作用在工具架(2)和补偿体(3)之间的驱动器(4)来实现。 工具架(2)由滚动体(5)支撑,并且补偿体(3)通过在工具进给单元(1)的壳体部分(7)处的可弹性变形的引导元件(6)悬挂。 补偿体(3)的质量大于承载工具的工具架(2)的质量,使得工具架(2)的工作运动实现补偿体(3)的仅在内部的补偿冲程 引导元件(6)的弹性变形范围。 引导元件(6)因此影响补偿体(3)的引导和复位。
    • 8. 发明授权
    • Apparatus and method for use in controlling machining chip and length of
such machining chip
    • 用于控制加工芯片和这种加工芯片长度的装置和方法
    • US5331870A
    • 1994-07-26
    • US968324
    • 1992-10-29
    • Wu Chin-Long
    • Wu Chin-Long
    • B23B25/02B23B1/00B23B29/00
    • B23B25/02Y10S82/904Y10T82/10Y10T82/2585
    • An apparatus and a method for controlling machining chip and the length of such chip make use of a lathe tool support on which an electromagnetic tool mount is disposed. The electromagnetic tool mount comprises a front clamping block and a rear clamping block for holding a machining tool. An electromagnetic coil located between the front and the rear clamping blocks is provided at the center thereof with a throgh hole for receiving the machining tool. The resumption and the interruption of power supply to the electromagnetic coil are regulated by the amplified signals sent out by an oscillation controlling circuit. The magnitude of power voltage and the cycle of power resumption of the electromagnetic coil are so adjusted as to facilitate the magnetization and the demagnetization of the machining tool. The machining chip is broken by a magnetically induced thrust and a shearing force generated by the rotation of the machining tool.
    • 用于控制加工芯片的装置和方法以及这种芯片的长度利用其上设置有电磁工具座的车床工具支架。 电磁工具支架包括前夹紧块和用于保持加工工具的后夹紧块。 位于前后夹紧块之间的电磁线圈在其中心处设置有用于接收加工工具的通孔。 电磁线圈的供电恢复和中断由振荡控制电路发出的放大信号进行调节。 功率电压的大小和电磁线圈的恢复周期被调整为便于加工工具的磁化和退磁。 加工芯片受到磁力引起的推力和由加工工具旋转产生的剪切力的破坏。