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    • 16. 发明授权
    • Method and apparatus for non-spindle multi-axis machining
    • 非主轴多轴加工的方法和装置
    • US09101991B1
    • 2015-08-11
    • US14333600
    • 2014-07-17
    • Tennine Corporation
    • William Q. Tingley, IIIWilliam Q. TingleyDaniel R. Bradley
    • B23D5/00B23D7/02B23D3/02
    • B23D5/00B23B29/04B23D1/06B23D1/16B23D3/02B23D7/00B23D7/02B23D13/00Y10T409/500164Y10T409/502624Y10T409/502788Y10T409/504428Y10T409/504592
    • A non-spindle multi-axis machining center (600) and method for forming a part using a non-rotating cutting tool (400) for removing material from a non-rotating workpiece within a three-dimensional work envelope. The non-spindle machining center makes obsolete the use of mills for profiling operations without the need to rotate the cutting tool to produce sufficient torque to remove material. Instead, the cutting tool (400) applies a linear cutting force to the workpiece along a one-, two-, or three-dimensional cutting path with sufficient impact to remove material by means of controlled fracturing instead of plastic deformation. Also, without the need to rotate, neither the cutting tool nor the part are constrained in shape by axial symmetry. Therefore, parts without restrictions in shape can be produced with higher material removal rates and finer surface finishes than by milling or turning.
    • 一种非主轴多轴加工中心(600)以及使用非旋转切削工具(400)形成部件的方法,用于从三维工作外壳内的不旋转工件移除材料。 非主轴加工中心使用磨机用于成型操作,而不需要旋转切削刀具以产生足够的扭矩来去除材料。 相反,切割工具(400)沿着一维,二维或三维切割路径向工件施加线性切割力,具有足够的冲击,通过受控的压裂而不是塑性变形来移除材料。 此外,不需要旋转,切削工具和部件也不被轴向对称地约束在形状上。 因此,可以生产具有更高的材料去除速率和更精细的表面光洁度而不是铣削或转动的形状上没有限制的部件。
    • 17. 发明申请
    • Device for Keyway Broaching
    • 键槽拉削装置
    • US20150132077A1
    • 2015-05-14
    • US14487610
    • 2014-09-16
    • WTO Werkzeug-Einrichtungen GmbH
    • Tobias FautzThomas KreutzerKarlheinz Jansen
    • B23Q5/027B23D41/08B23D3/02
    • B23Q5/027B23D1/08B23D3/02B23D11/00B23D13/02B23D41/08Y10T409/4028
    • A device for keyway broaching is provided with a housing, a drive shaft, a broaching carriage received and supported in the housing, a tool support connected to the broaching carriage, and a crank drive that couples the drive shaft and the broaching carriage with each other. The broaching carriage, when driven by the drive shaft, performs an oscillating movement comprising a cutting movement and a return stroke. A sleeve is arranged between the housing and the broaching carriage. A first seal is provided between the housing and the sleeve and/or between the sleeve and the broaching carriage. The tool support is connected to the broaching carriage with a rocking lever interposed between the tool support and the broaching carriage. The drive shaft has a control section that controls a relative movement between the rocking lever and the broaching carriage.
    • 用于键槽拉削的装置设置有壳体,驱动轴,容纳和支撑在壳体中的拉削托架,连接到拉削托架的工具支撑件和将驱动轴和拉削托架彼此联接的曲柄驱动器 。 拉削托架在由驱动轴驱动时执行包括切割运动和返回冲程的摆动运动。 套筒布置在外壳和拉床之间。 第一密封件设置在壳体和套筒之间和/或套筒和拉削托架之间。 工具支撑件连接到拉削托架,其中摆动杆插入在工具支撑件和拉削托架之间。 驱动轴具有控制部分,其控制摇杆和拉床之间的相对移动。