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    • 46. 发明申请
    • MACHINE TOOL WITH SWIVELING TABLE
    • 机床与开关台
    • US20150328745A1
    • 2015-11-19
    • US14709610
    • 2015-05-12
    • JTEKT CORPORATION
    • Akira MAKIUCHI
    • B24B41/06B23Q3/02B24B5/307B24B5/16B24B5/26
    • B23Q1/25B23Q1/522B23Q3/02B23Q11/08B24B5/16B24B5/26B24B5/307B24B41/061
    • A machine tool is provided in which chips and the like are prevented from adhering to a sliding surface of an upper surface of a base and a sliding surface of a lower surface of a swiveling table. A machine tool includes a base that has four corners and is shaped to be elongated, a swiveling table that swivels while sliding on an upper surface of the base, and a swiveling cover that is supported by the base or the swiveling table so as to be able to swivel. The swiveling cover protrudes from a widthwise edge of the swiveling table to cover a corner upper surface of the base in a first state where the swiveling table is not present on the corner upper surface, and is housed under the swiveling table in a second state where the swiveling table is present on the corner upper surface.
    • 提供了一种机械工具,其中防止了芯片等粘附到基座的上表面的滑动表面和旋转台的下表面的滑动表面。 一种机床包括具有四个角部并且成形为细长的基座,在基部的上表面上滑动同时旋转的旋转台​​和由基座或旋转台支撑的旋转盖, 能够旋转 旋转盖从旋转台的宽度方向的边缘突出,以在第一状态下覆盖基座的角上表面,其中旋转台不存在于角上表面上,并且在第二状态下容纳在旋转台下 旋转台位于角落上表面。
    • 47. 发明授权
    • Centerless grinding method and device using same
    • 无心磨削方法和使用其的装置
    • US4062150A
    • 1977-12-13
    • US721236
    • 1976-09-08
    • Masami MasudaSyuhei Takasu
    • Masami MasudaSyuhei Takasu
    • B24B5/18B24B5/26B24B1/00
    • B24B5/18
    • A centerless grinding method and a device using same, in which: a work having a cylindrical stem portion and a flange portion is supported on a supporting plate; a regulating wheel is provided with a lead angle so as to feed the work in its axial direction; the regulating wheel is fed in the direction substantially perpendicular to the axis of the grinding wheel, with the axis of the regulating wheel being inclined in a manner the peripheral surface of the regulating wheel may be maintained in parallel with a given conical peripheral surface of the grinding wheel which has a square or right-angled edge in its cross section; and the aforesaid grinding wheel has peripheral surfaces consisting of two continuous frusto-conical surfaces; whereby the stem portion and an inner face of the flange portion of the work may be ground at the same time.
    • 一种无心磨削方法和使用该方法的装置,其中:具有圆柱形杆部分和凸缘部分的工件支撑在支撑板上; 调节轮设置有引导角,以便在轴向方向上进给工件; 调节轮沿着大致垂直于砂轮的轴线的方向进给,调节轮的轴线以调节轮的外周表面的方式倾斜,并且可以保持平行于给定的锥形周边表面 砂轮在其横截面中具有正方形或直角的边缘; 并且上述砂轮具有由两个连续的截头圆锥形表面组成的周边表面; 由此工件的凸缘部分的杆部分和内表面可以同时被磨削。
    • 49. 发明授权
    • Apparatus for cutting arcuately-shaped worms
    • 用于切割弓形蠕虫的装置
    • US4037365A
    • 1977-07-26
    • US699760
    • 1976-06-25
    • Carroll Richard Cole
    • Carroll Richard Cole
    • B23F13/00B24B5/26
    • B23F13/00Y10T409/101431
    • An apparatus for cutting an arcuately-shaped worm includes a support shaft adapted to carry a worm blank thereon and journalled in a frame which is mounted for pivotal movement about a fixed axis so that the worm blank may be simultaneously rotated on its axis and arcuately translated about the fixed axis relative to a cutter. The shaft is rotated by a drive means, and arcuate translation of the shaft is provided by a worm gear which is journalled in the frame and driven off the shaft, with the worm engaging a fixed gear segment, so the rate of rotation and of arcuate translation are coordinated.
    • 用于切割弓形蜗杆的装置包括支撑轴,其适于在其上携带蜗杆毛坯并且轴颈安装在框架中,该框架安装成围绕固定轴线枢转运动,使得蜗杆坯件可以在其轴线上同时旋转并且弧形翻转 围绕关于切割器的固定轴线。 轴由驱动装置旋转,轴的弧形平移由蜗轮提供,该蜗轮轴颈安装在框架中并被驱动离开轴,蜗轮与固定齿轮段接合,因此旋转速度和弧形 翻译协调。
    • 50. 发明授权
    • Method for machining bodies of revolution having a circular generatrix
    • 用于加工具有循环生成的反转体的方法
    • US3664067A
    • 1972-05-23
    • US3664067D
    • 1969-10-31
    • ROULEMENTS SOC NOUVELLE
    • BEAUCHET JEAN
    • B24B5/26B24B1/00
    • B24B5/26
    • This method consists in holding the workpieces in a driving device and imparting two movements of rotation thereto, namely a movement of relative rotation of each workpiece about its axis and a movement of rotation of all the workpieces together with their driving device about the axis of this device which forms a predetermined angle with the axis of the grinding wheel revolving in the opposite direction compared with said device, the workpieces being fed automatically to said driving device, then brought into grinding engagement with the wheel and eventually ejected also automatically upon completion of the continuous machining operation.
    • 这种方法包括将工件保持在驱动装置中并赋予两个旋转运动,即每个工件围绕其轴线相对旋转的运动以及所有工件与其驱动装置一起围绕其轴线旋转的运动 与所述装置相比,与相反方向旋转的研磨轮的轴线形成预定角度的装置,工件被自动馈送到所述驱动装置,然后与轮磨削接合,并且最终在完成后自动弹出 连续加工操作。