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    • 3. 发明授权
    • Method for machining a workpiece and machine tool designed therefor
    • 加工设计的工件和机床的方法
    • US09415454B2
    • 2016-08-16
    • US13991432
    • 2012-01-19
    • Helmut SchweikerAndreas VogelJohannes Brogni
    • Helmut SchweikerAndreas VogelJohannes Brogni
    • B23F5/16B23F17/00
    • B23F17/003B23F5/163Y02P70/175Y10T409/105247Y10T409/105565Y10T409/10795
    • In a method for the machining of a workpiece (2) which is driven in rotary movement about a workpiece axis (Z) and whose shape includes a periodic structure, specifically a workpiece with gear teeth, a cutting tool which has gear-like teeth with a cutting edge formed at a frontal end of the teeth and which is driven in rotary movement about a cutting tool axis that is radially spaced apart from the workpiece axis, is brought into a rolling engagement with the workpiece under a crossing angle between the two rotary axes, wherein the cutting edge removes material from the workpiece through a cutting movement that has a component in the direction parallel to the workpiece axis, and wherein for the machining of the workpiece over a desired axial range the cutting tool is in addition made to perform a feed movement having a component parallel to the workpiece axis. According to the method, the feed movement component parallel to the workpiece axis and the cutting movement component parallel to the workpiece axis are oriented in opposite directions relative to each other.
    • 在用于加工工件(2)的方法中,所述工件(2)围绕工件轴线(Z)旋转运动并且其形状包括周期性结构,特别是具有齿轮齿的工件,具有齿轮状齿的切削工具 在齿的前端形成的切削刃与围绕与工件轴线径向隔开的切削工具轴线旋转运动而被驱动,在两个旋转体之间的交叉角度与工件滚动接合 轴,其中所述切削刃通过切削运动从所述工件移除材料,所述切削运动具有在与所述工件轴线平行的方向上的部件,并且其中为了在期望的轴向范围上对所述工件进行加工,所述切削工具另外用于执行 具有与工件轴线平行的部件的进给运动。 根据该方法,平行于工件轴线的进给运动部件和平行于工件轴线的切削运动部件相对于彼此相反的方向定向。
    • 5. 发明申请
    • METHOD FOR MACHINING A WORKPIECE AND MACHINE TOOL DESIGNED THEREFOR
    • 用于加工设计的工件和机床的方法
    • US20130266391A1
    • 2013-10-10
    • US13991432
    • 2012-01-19
    • Helmut SchweikerAndreas VogelJohannes Brogni
    • Helmut SchweikerAndreas VogelJohannes Brogni
    • B23F17/00
    • B23F17/003B23F5/163Y02P70/175Y10T409/105247Y10T409/105565Y10T409/10795
    • In a method for the machining of a workpiece (2) which is driven in rotary movement about a workpiece axis (Z) and whose shape includes a periodic structure, specifically a workpiece with gear teeth, a cutting tool which has gear-like teeth with a cutting edge formed at a frontal end of the teeth and which is driven in rotary movement about a cutting tool axis that is radially spaced apart from the workpiece axis, is brought into a rolling engagement with the workpiece under a crossing angle between the two rotary axes, wherein the cutting edge removes material from the workpiece through a cutting movement that has a component in the direction parallel to the workpiece axis, and wherein for the machining of the workpiece over a desired axial range the cutting tool is in addition made to perform a feed movement having a component parallel to the workpiece axis. According to the method, the feed movement component parallel to the workpiece axis and the cutting movement component parallel to the workpiece axis are oriented in opposite directions relative to each other.
    • 在用于加工工件(2)的方法中,所述工件(2)围绕工件轴线(Z)旋转运动并且其形状包括周期性结构,特别是具有齿轮齿的工件,具有齿轮状齿的切削工具 在齿的前端形成的切削刃与围绕与工件轴线径向隔开的切削工具轴线旋转运动而被驱动,在两个旋转体之间的交叉角度与工件滚动接合 轴,其中所述切削刃通过切削运动从所述工件移除材料,所述切削运动具有在与所述工件轴线平行的方向上的部件,并且其中为了在期望的轴向范围上对所述工件进行加工,所述切削工具另外用于执行 具有与工件轴线平行的部件的进给运动。 根据该方法,平行于工件轴线的进给运动部件和平行于工件轴线的切削运动部件相对于彼此相反的方向定向。
    • 9. 发明授权
    • Machining a race gear of a constant-velocity joint
    • 加工恒速接头的齿轮
    • US08282322B2
    • 2012-10-09
    • US12183292
    • 2008-07-31
    • Norbert Hessbrüggen
    • Norbert Hessbrüggen
    • B23F5/20
    • B23C3/023B23C3/04B23C3/30B23C5/08B23C2210/084B23C2260/08F16D3/223F16D2250/00Y10T29/49467Y10T409/103975Y10T409/105883Y10T409/106201Y10T409/107791Y10T409/10795Y10T409/108586
    • Race grooves and lobe outer surfaces of a constant-velocity race gear centered on a gear axis are finished by engaging a first groove of the race gear with a rotating groove-machining tool and relatively moving the race gear and rotating groove-machining tool arcuately to finish the first groove while holding the race gear against rotation about its gear axis. Then the first groove of the race gear is disengaged from the rotating groove-machining tool while holding the race gear against rotation about its gear axis. Then the race gear is rotated about its gear axis to align a second groove with the rotating groove-machining tool while engaging a first lobe outer surface with a rotating surface-machining tool to finish same. These steps are repeated in the same order to finish the second groove and a second lobe outer surface and so on until all the grooves and lobe outer surfaces of the race gear are finished.
    • 通过将赛道齿轮的第一槽与旋转槽加工工具接合,并使赛车齿轮和旋转槽加工工具弧形地相对移动,来完成以齿轮轴为中心的恒速赛道的跑道槽和凸角外表面 完成第一个凹槽,同时保持赛道齿轮抵抗其齿轮轴的旋转。 然后,赛跑齿轮的第一槽与旋转槽加工工具脱离啮合,同时保持赛道齿轮防止其齿轮轴旋转。 然后,齿轮围绕其齿轮轴线旋转,以使第二槽与旋转槽加工工具对准,同时使第一凸角外表面与旋转表面加工工具接合,以完成相同的操作。 这些步骤以相同的顺序重复以完成第二凹槽和第二凸角外表面等,直到跑道齿轮的所有凹槽和凸角外表面完成。
    • 10. 发明授权
    • Deburring by hobbing with integrated secondary deburring without a smoothing tool
    • 通过滚铣去除毛刺,无需平滑工具即可完成二次去毛刺
    • US07624505B2
    • 2009-12-01
    • US12311156
    • 2007-07-20
    • Helmut F. JaegerJuergen Peschina
    • Helmut F. JaegerJuergen Peschina
    • B23F17/00B23F23/08
    • B23F17/006B23F19/10B23F23/04Y10T29/49476Y10T29/5127Y10T29/5128Y10T29/5136Y10T409/100795Y10T409/101113Y10T409/101272Y10T409/101749Y10T409/106201Y10T409/107632Y10T409/10795Y10T409/30616Y10T483/16
    • The invention relates to a method for tooth-machining of workpieces (3), especially gear wheels, comprising milling, deburring by hobbing and integrated secondary deburring. The method proceeds on a machine tool (1) having two workpiece spindles (11, 12) which may exchange places. A workpiece (3) is mounted on a first workpiece spindle (11), followed by the workpiece spindles (11, 12) exchanging places, followed by pre-milling and, where applicable, cutting (=deburring by shaving) of the workpiece (3), followed by a further exchange of places, followed by chamfering and cutting of the workpiece (3), followed by a further exchange of places, followed by a finish-milling of the workpiece (3), followed by a further exchange of places, followed by a workpiece change. At the same time, the same procedure takes place on the second workpiece spindle (12), staggered in time by an exchange of places of the workpiece spindles (11, 12). With the method according to the invention, well-deburred toothed workpieces (3) may be produced quickly and at low cost.
    • 本发明涉及一种用于对工件(3)进行齿加工的方法,特别是齿轮,包括铣削,通过滚齿去毛刺和集成的二次去毛刺。 该方法在具有两个可以交换位置的工件主轴(11,12)的机床(1)上进行。 工件(3)安装在第一工件主轴(11)上,随后是工件主轴(11,12)交换位置,然后进行预铣,并且在适用的情况下,通过剃削(=剃毛去毛刺)工件 3),然后进一步交换位置,然后对工件(3)进行倒角和切割,然后进一步更换位置,然后对工件(3)进行精加工,然后进一步更换 位置,其次是工件更换。 同时,通过更换工件主轴(11,12)的位置,在第二工件主轴(12)上进行相同的程序。 利用根据本发明的方法,可以快速且低成本地制造出完全去毛刺的齿形工件(3)。