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    • 61. 发明公开
    • Abricht-Schleifverfahren für elektronisch gesteuerte Schleifmaschinen
    • 敷料电子控制的磨床磨削方法。
    • EP0096411A1
    • 1983-12-21
    • EP83105552.0
    • 1983-06-06
    • Lang, Werner Gerhard
    • Saljé, Ernst, Prof. Dr.-Ing.
    • G05B19/18B24B1/00B24B53/00
    • B24B53/00B24B53/08G05B19/4166G05B2219/37251G05B2219/37345G05B2219/37357G05B2219/43141G05B2219/45159G05B2219/45161G05B2219/49052G05B2219/49062G05B2219/50315
    • Beschrieben ist ein Abricht-Schleifverfahren für elektronisch gesteuerte Schleifmaschinen für das Rund- oder Planschleifen von Werkstücken. Um die Wirkrauhtiefe während des Schleifprozesses zu erhalten, wobei die Rollendrehzahl wählbar sein und die Zustellung der Abrichtrolle gegen die Schleifscheibe kontinuierlich erfolgen soll, ist vorgesehen, daß zur Einhaltung einer vorgegebenen Wirkrauhtiefe (R is ) der Schleifscheibe der Abrichtrollenträger dem Schleifscheibenträger kontinuierlich gemäß den Funktionen nachgeführt wird, worin bedeuten:

      v frd (t) Vorschubgeschwindigkeit des Abrichtrollenschlittens (31) relativ zum Schleifscheibenschlitten
      a ed (t) Abrichtzustellung pro Umdrehung
      n s (t) Schleifscheibendrehzahl
      d s (t) Schleifscheibendurchmesser
      t laufende Zeit
      v, Schleifscheibenumfangsgeschwindigkeit, für
      das beschriebene Beispiel einer geraden Schleifscheibe gleicht sie der Schleifscheibengeschwindigkeit v c . Es ist somit v c = v s .
      y s (t) vertikale Koordinate des Scheibenmittelpunktes
      y w (t) Werkstückabmessung in y-Richtung
    • 描述了一种用于电子控制的磨床用于工件的圆形或Planschieifen敷料磨削方法。 为了获得在研磨过程中的有效的表面粗糙度,将被选择的辊速度,并具有对抗砂轮连续中规定,在根据功能磨头连续地保持Abrichtrollenträger的砂轮的预定有效粗糙深度(RTS)其中:vfrd(T)预先Abrichtrollenschlittens(31)的速度AED相对于所述磨削轮托架(t)的每转NS(t)的砂轮转速DS(T)磨削轮直径吨当前时间与砂轮圆周速度敷料,对于一个直的砂轮的描述示例 比较它的砂轮速度Vc。 因此,它是VC =对比 YS(t)的垂直车轮中心点YW的坐标在y方向上(t)的工件尺寸
    • 63. 发明申请
    • Grinding machine
    • 磨床
    • US20060131183A1
    • 2006-06-22
    • US10544201
    • 2004-01-20
    • Raymond Jacobus KnaapenMarinus Josephus DonaKrassimir KrastevJakob VijfvinkelPiet Van Rens
    • Raymond Jacobus KnaapenMarinus Josephus DonaKrassimir KrastevJakob VijfvinkelPiet Van Rens
    • B23H3/00
    • B24B49/16B24B53/001G05B2219/45159
    • A grinding machine (1) for grinding a workpiece (40) comprises the following components: a cup wheel (10) having an annular grinding surface (11); a disc-shaped electrode (60), which is positioned in the vicinity of at least a portion of the grinding surface (11) such that a dressing area (75) is obtained in which a relatively small gap is present between the electrode (60) and the grinding surface (11), feed means (70) for feeding electrolyte to the dressing area (75); and a generator (20) for generating an electric current between the grinding surface (11) and the electrode (60), via the electrolyte. The electrode (60) is movable with respect to the dressing area (75), so that contamination of the electrode (60), which normally occurs as a result of the dressing process, is continuously removed. Consequently, the quality of the dressing process is maintained at a high level.
    • 一种用于研磨工件(40)的磨床(1)包括以下部件:具有环形研磨表面(11)的杯轮(10); 位于磨削表面(11)的至少一部分附近的圆盘形电极(60),从而获得在电极(60)之间存在相对较小间隙的修整区域(75) )和研磨表面(11),用于将电解质供给到更衣区(75)的进料装置(70); 以及用于经由所述电解质在所述研磨面(11)与所述电极(60)之间产生电流的发电机(20)。 电极(60)能够相对于修整区域(75)移动,从而连续地去除由于修整过程而通常发生的电极(60)的污染。 因此,修整过程的质量保持在高水平。
    • 65. 发明授权
    • Apparatus for machining a workpiece to non-revolute symmetric and
aspherical surface
    • 用于将工件加工成非旋转对称和非球面的装置
    • US5711696A
    • 1998-01-27
    • US429639
    • 1995-04-27
    • Yukio MaedaTakao TaniguchiTetsuji Oasaka
    • Yukio MaedaTakao TaniguchiTetsuji Oasaka
    • B24B49/12B24B13/00B24B13/06B24B49/18B24B53/00B24B53/053B24B53/065G05B19/18B24B49/00B24B51/00
    • G05B19/184B24B13/06B24B49/18B24B53/053G05B2219/37208G05B2219/37345G05B2219/45157G05B2219/45159G05B2219/50063
    • An apparatus for machining a workpiece which has a non-revolute symmetrical and aspherical surface with a rotating grinding wheel. The apparatus comprises a workpiece supporting member supporting the workpiece and a wheel head providing the grinding wheel an outer peripheral surface of which takes a form of a part of a spherical shape. The workpiece and the grinding wheel are relatively moved by a first drive mechanism in an infeed direction, the workpiece supporting member and the wheel head are relatively moved by a second drive mechanism in a traverse feed direction perpendicular to the infeed direction, and the workpiece supporting member and the wheel head are relatively moved by a third drive mechanism in a pitch feed direction perpendicular to both of the infeed direction and the traverse feed direction. A truing device is moved by the second drive mechanism in the traverse feed direction relative to the grinding wheel, and has a truing element rotatable about an axis perpendicular to a rotational axis of the grinding wheel through a spherical center thereof. The first, second and third drive mechanisms are controlled by a control device based upon the aspherical shape data for the workpiece.
    • 一种用旋转研磨轮加工具有非旋转对称和非球面的工件的装置。 该装置包括支撑工件的工件支撑构件和提供砂轮的轮头,其外周表面呈球形的一部分的形式。 工件和砂轮通过第一驱动机构在进给方向相对移动,工件支撑构件和砂轮头在垂直于进给方向的横动进给方向上被第二驱动机构相对移动,并且工件支撑 构件和轮头在垂直于进给方向和横动进给方向两者的俯仰进给方向上被第三驱动机构相对移动。 修整装置通过第二驱动机构在相对于砂轮的横向进给方向上移动,并且具有通过其球面中心围绕与砂轮的旋转轴线垂直的轴线旋转的修整元件。 第一,第二和第三驱动机构由基于工件的非球面形状数据的控制装置控制。
    • 67. 发明授权
    • Truing apparatus for a grinding wheel with rounded corners
    • 具有圆角的砂轮修整设备
    • US4551950A
    • 1985-11-12
    • US634430
    • 1984-07-26
    • Kunihiko UnnoToshio TsujiuchiYukio Oda
    • Kunihiko UnnoToshio TsujiuchiYukio Oda
    • G01B21/00B24B53/00B24B53/08G05B19/18B24B53/14
    • G05B19/182B24B53/08G05B2219/45159
    • A truing apparatus includes a truing tool supported on a tool support movable radially and axially of a grinding wheel having a rounded corner and drivable by a feed drive unit coupled to the tool support to move along a predetermined path for truing the rounded corner of the grinding wheel. At least one contact member for contacting outer peripheral and end surfaces of the grinding wheel is mounted on the tool support, and a sensor is also mounted on the tool support for detecting a contact between the contact member and the grinding wheel. A feed control system controls the feed drive unit for moving the truing tool along the predetermined path. The feed control system controls the feed drive unit so that the contact member will move radially and axially of the grinding wheel until the sensor is actuated immediately after one truing process and immediately before a next truing process. A grinding wheel position detector detects radial and axial positions of the grinding wheel when the sensor is actuated immediately after the one truing process and immediately before the next truing process. A correcting unit corrects the predetermined path along which the truing tool is to move in the next truing process based on the positions of the grinding wheel detected by the grinding wheel position detector immediately after the one truing process and immediately before the next truing process.
    • 修整装置包括修整工具,该工具支撑件可在具有圆角的砂轮的径向和轴向上移动并且可通过联接到工具支撑件的进给驱动单元驱动的工具支撑件沿着预定的路径移动,以便研磨研磨的圆角 轮。 用于接触砂轮的外周和端表面的至少一个接触构件安装在工具支架上,传感器也安装在工具支架上,用于检测接触构件和砂轮之间的接触。 进给控制系统控制进给驱动单元,用于沿着预定路径移动修整工具。 进给控制系统控制进给驱动单元,使得接触构件将沿砂轮的径向和轴向移动,直到在一个修整过程之后立即致动传感器并且在下一个修整过程之前。 砂轮位置检测器在传感器在一个修整过程之后立即致动并且紧接在下一个修整过程之前,检测砂轮的径向和轴向位置。 校正单元基于在一次修整处理之后和紧接在下一个修整处理之前由砂轮位置检测器检测到的砂轮的位置来校正修整工具在下一个修整过程中要移动的预定路径。