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    • 2. 发明授权
    • Adjustable tool-holder in machine-tools for slot milling
    • 机床铣刀可调刀架
    • US4836725A
    • 1989-06-06
    • US138453
    • 1987-12-21
    • Anton HorskySiegfried KuhnWolf-Dietrich Voss
    • Anton HorskySiegfried KuhnWolf-Dietrich Voss
    • B23C3/28B23Q5/04
    • B23Q5/046B23C3/28Y10T279/14Y10T409/307672Y10T409/308232Y10T409/3084
    • Lathes usually have only two axes of movement for the tool, namely the directions of the displacement of the saddle and cross rest. Since power-driven tools are increasingly being used, especially in NC lathes, in which radial and axial slotting is performed on the workpiece with end mills, for example, there is a need, for example, to vary the width of the slot by slightly shifting the tool in a third direction perpendicular to the first two directions of movement. Precisely in the case of slotting, no continuous adjustment is necessary, as it would be very costly to achieve mechanically. Instead it is sufficient to be able to reach two or three fixedly specified, changeable positions. This can be achieved by an arcuate movement of the tool which will also contain components of the desired third direction of movement, and this can be achieved mechanically either by rotating a part of the tool head or by an eccentrically configured tool socket.
    • PCT No.PCT / EP87 / 00102 Sec。 371日期1987年12月21日 102(e)1987年12月21日日期PCT提交1987年2月24日PCT公布。 公开号WO87 / 04959 日期1987年8月27日。刀具通常只有两个工具的运动轴,即鞍座和交叉的位移方向。 由于越来越多地使用动力驱动的工具,特别是在NC车床中,例如,在具有端铣刀的工件上进行径向和轴向开槽的情况下,例如需要稍微改变槽的宽度 在垂直于前两个运动方向的第三方向上移动工具。 正是在开槽的情况下,不需要进行连续调节,因为机械地实现成本很高。 相反,能够达到两个或三个固定指定的,可变的位置就足够了。 这可以通过工具的弓形运动来实现,其还将包含期望的第三运动方向的部件,并且这可以通过旋转工具头的一部分或通过偏心配置的工具插座而机械地实现。
    • 4. 发明授权
    • Multi-purpose machine
    • 多功能机
    • US06926591B2
    • 2005-08-09
    • US10381584
    • 2001-10-23
    • Anton HorskyPaul Dieter ScharpfWolf-Dietrich Voss
    • Anton HorskyPaul Dieter ScharpfWolf-Dietrich Voss
    • B23C3/06B23B5/22B24B5/42B24B7/30
    • B24B5/42
    • The invention concerns a method and an apparatus in which crankshafts and similar components can be machined at the relevant machining locations (big-end bearing locations, main bearing locations, side cheek side surfaces, end journal/end flange) on one machine and thus with a low level of expenditure in terms of investment items and nonetheless overall in highly time-efficient manner, by mechanical material removal in one and the same machine, wherein in all machining steps the workpiece is gripped on the central axis and is drivable in rotation and the concentric rotationally symmetrical surfaces are machined by workpiece-based methods.
    • 本发明涉及一种方法和装置,其中可以在一个机器上的相关加工位置(大端轴承位置,主轴承位置,侧面颊侧表面,端部轴颈/端部凸缘)上加工曲轴和类似部件,因此与 在投资项目方面的支出水平很低,而且总体上以高效率的方式,通过在同一台机器中机械材料去除,其中在所有加工步骤中,工件被夹持在中心轴线上并且可旋转地驱动, 同心旋转对称表面通过基于工件的方法加工。
    • 5. 发明授权
    • Milling machine
    • 铣床
    • US06322300B1
    • 2001-11-27
    • US09202884
    • 1999-07-12
    • Rolf SantoriusPaul Dieter ScharpfWolf-Dietrich VossMatthias KohlhaseHerbert KieferLeo Schreiber
    • Rolf SantoriusPaul Dieter ScharpfWolf-Dietrich VossMatthias KohlhaseHerbert KieferLeo Schreiber
    • B23C306
    • B23C3/06B23C2200/367H01R12/7011H01R12/716H01R13/6581Y10T82/19Y10T409/30756Y10T409/307616
    • The problem addressed by the invention is to provide a milling machine which can be used to machine eccentric end faces and peripheral faces and which ensures a short machining time despite its simple design. A milling machine of this king for machining workpieces and with means of clamping eccentric end faces or enveloping surfaces, e.g. of a crankshaft (1), with a bed (20), with two mutually facing chucks (21, 22) to accommodate the workpiece (1), at least one of these chucks being rotatable and positionable (C1 axis) by means of a headstock (23, 24), with a tool holder (25, 26) which can be moved at right angles to the Z axis and has a rotatable milling cutter (5, 6), and with a control mechanism is characterized by a plurality of tool holders which can be controlled independently of each other in terms of both milling cutter rotation and travel in a transverse direction, and in that the control mechanism controls not only the rotation of the workpiece but also the transverse movement of the tool holders and the rotation of the milling cutters.
    • 本发明提出的问题在于提供一种可用于加工偏心端面和周边面的铣床,尽管其设计简单,但确保了短的加工时间。 该王的铣床用于加工工件,并具有夹紧偏心端面或包封表面的装置,例如, 具有床(20)的曲轴(1),具有两个相互面对的卡盘(21,22)以容纳所述工件(1),这些卡盘中的至少一个可旋转和定位(C1轴),借助于 主轴箱(23,24),具有可与Z轴成直角运动并具有可旋转铣刀(5,6)的工具架(25,26),并且具有控制机构的特征在于多个 刀柄可以在铣刀旋转和横向移动方面彼此独立地控制,并且控制机构不仅控制工件的旋转,而且控制刀架的横向运动和旋转 的铣刀。
    • 8. 发明授权
    • Method of controlling workpiece machining
    • 控制工件加工的方法
    • US06506004B1
    • 2003-01-14
    • US09424507
    • 2000-03-09
    • Matthias KohlhasePaul Dieter ScharpfWolf-Dietrich Voss
    • Matthias KohlhasePaul Dieter ScharpfWolf-Dietrich Voss
    • B23C306
    • B23C3/06Y10T29/49286Y10T409/303752Y10T409/30756Y10T409/307784
    • The invention concerns a method of controlling the machining of a workpiece which moves during the machining operation and on which a plurality of tool units operate simultaneously at different machining locations, in particular for controlling the rotary milling of a rotating workpiece such as for example a crankshaft at a plurality of machining locations (A, B, . . . ) simultaneously by separate tool units (a, b, . . . ), which is characterised in that with knowledge of the optimum motion parameters (nkwa, na, xa, ya, . . . ; nkwb, nb, xb, yb, . . . ) of workpiece (KW) and tool (WZ), which are separate for each machining location (A, B), the speed of motion of the workpiece, in particular the rotary speed (nKWa, nKWb) of the crankshaft (KW) and the speeds of motion (na, xa, ya, . . . ;nb, xb, yb, . . . ) of the tool units (a, b . . . ) are so selected that in the sum (S) of all simultaneously machined machining locations (A, B, . . . ) an optimum machining result is achieved overall.
    • 本发明涉及一种控制在加工操作期间移动的工件的加工的方法,并且多个工具单元在其上在不同的加工位置同时操作,特别是用于控制旋转工件的旋转铣削,例如曲轴 通过分离的工具单元(a,b,...)同时在多个加工位置(A,B ...),其特征在于,通过了解最佳运动参数(nkwa,na,xa,ya 对于每个加工位置(A,B)分开的工件(KW)和刀具(WZ)的工件的速度,工件的运动速度,...,nkwb,nb,xb,yb,...) 特别是工具单元(a,b。)的曲轴(KW)的旋转速度(nKWa,nKWb)和运动速度(na,xa,ya,...,nb,xb,yb,...) ...)被选择为在所有同时加工的加工位置(A,B ...)的总和(S)中,总体上实现了最佳的加工结果。