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    • 3. 发明申请
    • ねじ切りフライス
    • 螺纹切割机
    • WO2009057192A1
    • 2009-05-07
    • PCT/JP2007/071037
    • 2007-10-29
    • オーエスジー株式会社大沢 二朗
    • 大沢 二朗
    • B23G5/18B23C3/00B23C5/10
    • B23G5/18B23G2200/40B23G2200/48Y10T407/172Y10T409/30056
    •  図2の展開図に示すように、ねじれ溝16a、16cのリード角αが軸心まわりに隣接するねじれ溝16b、16dのリード角βと相違させられることにより、ねじれ溝16a、16cに沿って設けられた切れ刃20a、20cのリード角αが軸心まわりに隣接する切れ刃20b、20dのリード角βと相違させられており、それ等の切れ刃20a~20dの間隔が軸方向において連続的に変化させられているため、軸心Sまわりにおける切れ刃20a~20dの間隔が不等になる。これにより、ねじを切削加工する際の切削抵抗の増減が不規則になり、共振によりビビリ振動が発生することが抑制され、種々の加工条件下で優れた加工精度でねじを切削加工できるようになる。
    • 由于如图2的展开图所示,螺旋槽(16a,16c)与邻接的螺旋槽(16b,16d)的引导角β围绕轴心中心不同,所以切削刃(20a, 沿着螺旋槽(16a,16c)设置的与轴心中心相邻的切削刃(20b,20d)的导程角β与轴心中心S的切割边缘(20a-20d)的间隔不同 由于切削刃(20a-20d)的间隔沿轴向连续变化,所以不均等。 由于切割阻力的增加/减少在螺钉被切断时变得不规则,所以抑制了由共振引起的颤动的发生,并且可以在各种加工条件下以优异的加工精度切割螺杆。
    • 4. 发明申请
    • ORBITAL END MILL
    • WO2006103649A2
    • 2006-10-05
    • PCT/IL2006000299
    • 2006-03-05
    • HANITA METAL WORKS LTDVOLOKH VLADIMIR
    • VOLOKH VLADIMIR
    • B26D1/12
    • B23C5/10B23C3/02B23C2210/084B23C2220/52B23G5/182Y10T407/1946Y10T408/356Y10T408/9048Y10T409/300112Y10T409/30056Y10T409/303808Y10T409/307616
    • The present invention relates to tools for the machining of solid materials, namely an improved end-mill particularly suited for use in an orbital mode in the milling of recesses. The orbital milling tool for cutting openings in a solid material, wherein the openings include normal cylindrical through holes, blind holes, holes including recesses, screw threaded holes, tapered holes and double tapered holes, aid tool having a shank portion adjoining a cutting portion, the axis of the cutting portion being spaced apart from the spindle axis of a machine tool in which the shank is to be held. The cutting portion having a plurality of roughing cutting edges, a plurality of semi-finishing edges axially spaced apart by means of a first transition section from the roughing cutting edges and a plurality of finishing edges axially spaced apart by means of a second transition section from the semi-finishing cutting edges. The maximum diameter of the semi-finishing edges being larger than said roughing cutting edges and smaller than the finishing edges.
    • 本发明涉及用于固体材料加工的工具,即改进的端铣刀,特别适用于铣削凹槽中的轨道模式。 用于切割固体材料的开口的轨道铣削工具,其中开口包括通常的圆柱形通孔,盲孔,包括凹槽的孔,螺纹孔,锥形孔和双锥形孔,辅助工具具有邻接切割部分的柄部分, 切割部分的轴线与其中待保持柄部的机床的主轴轴线间隔开。 所述切割部分具有多个粗切削刃,多个半精加工边缘通过来自粗加工切削刃的第一过渡段轴向间隔开,并且多个精加工边缘通过第二过渡段轴向间隔开, 半精加工切边。 半精加工边缘的最大直径大于所述粗切削刃并且小于精加工边缘。
    • 5. 发明申请
    • STEERABLE TOOLHOLDER
    • 应税刀柄
    • WO1998018589A1
    • 1998-05-07
    • PCT/CH1997000389
    • 1997-10-15
    • GAFNER, Rudolf
    • B23G01/34
    • B23G1/34Y10T74/1957Y10T409/300112Y10T409/30056
    • This invention concerns a toolholder (1) for a tool drive with an outer (2) and an inner concentric (4) drive shaft. It has a first adapter (10) which is detachably held by means of a conventional clamping system (15) in a receptacle (3) of the outside drive shaft (2). A second adapter (20) is concentrically mounted in the first tool receptable (3) of the first adapter (10) so as to rotate with regard to the latter. The second adapter (20) has a tool receptable (25) which can be inclined by means of a pivoting element (30). Thus, a tool can be eccentrically inserted and concentrically driven. This makes completely new machining modes possible, for example the machining of a hollow shaft, since inner threads can now be turned, rather than cut.
    • 所以建议工具保持器(1)用于工具驱动器具有外(2)和内,同心(4)的驱动轴。 它包括一第一适配器(10),其通过在所述外驱动轴(2)的一个壳体(3)常规类型的夹持系统(15)的装置被可拆卸地固定住的。 第二适配器(20)在所述第一适配器(10)的第一工具接收器(3)同心相对于其可旋转地保持。 第二适配器(20)具有一刀具保持器(25),它可以通过枢转元件(30)而被偏转。 因此,一个工具可以被偏心地夹紧和同心驱动。 这使得能够完全新类型的处理,例如通过研磨现在内螺纹的空心轴,而不是可被切割。
    • 10. 发明申请
    • ORBITAL MACHINING APPARATUS WITH DRIVE ELEMENT WITH DRIVE PINS
    • 带有驱动针的驱动元件的ORBITAL MACHINING设备
    • WO2004113002A8
    • 2005-02-24
    • PCT/SE2004001036
    • 2004-06-28
    • NOVATOR ABSTUXBERG MATSPETTERSSON BJOERN
    • STUXBERG MATSPETTERSSON BJOERN
    • B23B41/04B23C1/00B23C3/00B23Q1/44B23Q1/48B23Q1/54
    • B23Q1/5468B23Q1/4885Y10T409/30056Y10T409/304424Y10T409/307112Y10T409/307616Y10T409/309408
    • An orbital machining apparatus for producing a hole in a workpiece by means of a cutting tool comprising a first actuator configured for rotating the cutting tool about its longitudinal center axis during the machining of the hole; a second actuator configured for moving the cutting tool in an axial feed direction substantially parallel to said tool axis; a third actuator configured for rotating the cutting tool about a principal axis; and a radial offset mechanism configured for controlling the radial distance of the center axis of the cutting tool from said principal axis. The third actuator includes a rotating drive element (57) driven by an individual motor, a carrier ring (60) connected to and rotated by the drive element (57) by means of two diametrically opposed, radial drive pins (62) such that the carrier ring (60) may perform a radial sliding movement relative to the drive element (57) while being rotated thereby, and two diametrically opposed, radial carrier guide shafts (64) circumferentially spaced 90 from the drive pins (62) and connecting the carrier ring (60) and an inner cylindrical eccentric body such that the latter may perform a radial sliding movement relative to the carrier ring while being rotated thereby.
    • 一种轨道加工装置,用于通过切削工具生产工件中的孔,该切削工具包括:第一致动器,其构造成用于在加工孔期间使切削工具围绕其纵向中心轴线旋转; 第二致动器,其构造成用于沿着基本上平行于所述刀具轴线的轴向进给方向移动所述切削工具; 第三致动器,其构造成用于围绕主轴线旋转所述切削工具; 以及径向偏移机构,其构造成用于控制所述切削工具的中心轴线与所述主轴线的径向距离。 第三致动器包括由单独的马达驱动的旋转驱动元件(57),通过两个直径相对的径向驱动销(62)连接到驱动元件(57)并由驱动元件(57)旋转的载体环(60),使得 载体环(60)可以相对于驱动元件(57)进行径向滑动运动,同时由此旋转,以及两个径向对置的径向载体引导轴(64)与驱动销(62)周向间隔开90°,并将载体 环(60)和内圆柱形偏心体,使得后者可以在旋转的同时相对于承载环执行径向滑动运动。