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    • 1. 发明申请
    • Turning method
    • 车削方法
    • US20020170396A1
    • 2002-11-21
    • US10151089
    • 2002-05-20
    • Johann Maier
    • B23B001/00B23B029/24
    • B23B3/164B23B29/24Y10T82/10Y10T82/2587
    • The novel turning method on a lathe or a machining apparatus uses a tool head which is traversable for the machining and can be rotated mechanically in a receiver with a rotary axis D in the course of the machining. The rotary axis D of the tool head lies within an angular range null of 45null to 90null to the X-axis and perpendicularly to the Z-axis of the machining apparatus. In addition, a tool head is used whose cutting inserts are arranged in such a way that each cutting insert has a tool reference plane Pr through in each case identical selected cutting-edge points perpendicularly to the assumed cutting direction in accordance with DIN 6581, this tool reference plane Pr running within an angular range null of 90null to 135null to the rotary axis D of the tool head.
    • 在车床或加工装置上的新型车削方法使用可以进行加工的刀头,并且可以在加工过程中在具有旋转轴线D的接收器中机械地旋转。 刀头的旋转轴线D位于与X轴成45度到90度的角度范围α,并且垂直于加工装置的Z轴。 此外,使用刀头,其切削刀片以这样的方式布置,使得每个切削刀片在每种情况下具有与根据DIN 6581的假定切削方向垂直的所选切削刃点相对应的刀具参考平面Pr 刀具参考平面Pr在与工具头的旋转轴线D成90°到135°的角度范围β内运行。
    • 2. 发明申请
    • Lathe
    • 车床
    • US20030019336A1
    • 2003-01-30
    • US10176104
    • 2002-06-19
    • Traub Drehmaschinen GmbH
    • Ulrich Baumann
    • B23B009/00B23B029/24
    • B23Q39/048B23Q39/02B23Q2039/008Y10T82/2506Y10T82/2524
    • In order to design a lathe comprising a machine frame, a first working spindle for a first workpiece held on the machine frame, at least one first tool carrier for the machining of the first workpiece, a second working spindle for a second workpiece which can be brought from a coaxial position into a non-coaxial position in a transverse direction in relation to the first working spindle, and a first tool carrier on the front side associated with a first working space, and a second tool carrier on the front side associated with a second working space, in such a manner that it is possible for machining operations on the first workpiece and the second workpiece to be as flexible as possible, it is suggested that the first tool carrier on the front side and the second working spindle be movable in the transverse direction relative to one another controlled by a machine control.
    • 为了设计包括机架的车床,用于保持在机架上的第一工件的第一工作主轴,用于加工第一工件的至少一个第一工具架,用于第二工件的第二工作主轴,其可以是第二工件 从同轴位置相对于第一工作主轴在横向方向上的非同轴位置,以及与第一工作空间相关联的在前侧上的第一工具架,以及与第一工作空间相关联的第二工具架 第二工作空间,使得能够使第一工件和第二工件上的加工操作尽可能地柔性,建议前侧的第一工具架和第二工作主轴可移动 在相对于彼此的横向方向上由机器控制控制。
    • 4. 发明申请
    • Device for positionally-accurate accommodation of a secondary member on a carrier
    • 用于在载体上位置精确地容纳次要构件的装置
    • US20030029287A1
    • 2003-02-13
    • US10214536
    • 2002-08-08
    • ESA Eppinger GmbH
    • Joel Judas
    • B23B029/00B23B029/24
    • B23Q3/18B23B29/20Y10T82/2585Y10T82/2587
    • A device for positionally-accurate accommodation of at least one secondary member on a carrier, such as a toolholder on a turret disc, comprises of adjustable locating means for positionally-accurate adjustment of the secondary member relative to the carrier. The locating means comprise of a bearing surface (24), which is laterally arranged on the carrier in the vicinity of its seat-engaging surface and which are arranged on a locating member that is adjustable relative to the carrier by means of adjusting means (30). Moreover the secondary member (17) comprises of stopping means, which are similarly allocated to the locating member in the vicinity of its seat-engaging surface (170) and which, when a secondary member is mounted on the seat-engaging surface of the carrier, are held in contact with the stopping face with prestress.
    • 用于位置精确地容纳载体上的至少一个次要构件的装置,例如在转盘盘上的刀架,包括用于相对于载体对次要构件进行位置精确调节的可调定位装置。 定位装置包括轴承表面(24),该轴承表面横向布置在载体附近的其座接合表面上并且布置在通过调节装置(30)相对于载体可调节的定位构件 )。 此外,副构件(17)包括止动装置,其类似地分配给位于其座接合表面(170)附近的定位构件,并且当辅助构件安装在承载件的座椅接合表面上时 通过预应力与止动面接触。
    • 5. 发明申请
    • Turret
    • 炮塔
    • US20020170397A1
    • 2002-11-21
    • US10147312
    • 2002-05-17
    • Sauter Feinmechanik GmbH
    • Reiner SauterAlfred E. MullerDetlef SahmJochen Dieringer
    • B23B029/24B23B029/32
    • B23Q11/0092B23Q1/0009B23Q1/52B23Q16/102Y10T29/5154Y10T29/5155Y10T29/5167Y10T74/14Y10T74/1494Y10T82/2591
    • 1. Turret. 2. The invention relates to a turret with a housing (10) to be connected to a machine tool, a rotatably mounted toolholder (12) for mounting of machining tools (14, 116), and an electric drive (26) for swinging the toolholder (12) into a particular working station for the machining tools (14, 16), the electric drive (26) having a rotor (28) and a stator (30) with coil windings, the rotor (28) of the electric drive (26) being connected to the toolholder (12) and the stator (30) to elements (32) of the housing (10), the rotary movement for the toolholder (12) being generated without gearing and directly by the electric drive (26), and the rotor (28) enclosing the stator (30). in that both the rotor (28) and the stator (30) are enclosed by the toolholder (12) and in that the rotor (28) is in direct contact with the toolholder (12) on the side of the external circumference and in this way are rigidly connected to the toolholder (12) for transmission of torque, the rotor-stator layout in question creates a so-called external rotor for the electric drive, in which layout the rotor circulates externally with the toolholder and the stator is mounted internally on the housing.
    • 炮塔 本发明涉及一种具有连接到机床的壳体(10)的转台,用于安装加工工具(14,116)的可旋转地安装的刀架(12)和用于摆动 刀架(12)进入用于加工工具(14,16)的特定工作站中,电驱动器(26)具有转子(28)和具有线圈绕组的定子(30),电驱动器的转子(28) (26)连接到刀架(12)和定子(30)连接到壳体(10)的元件(32)上,用于刀架(12)的旋转运动无齿轮传动而直接由电驱动器(26 )和包围定子(30)的转子(28)。 因为转子(28)和定子(30)都被刀架(12)包围,并且转子(28)在外圆周侧与刀架(12)直接接触,并且在这 方式刚性地连接到刀架(12)以传递扭矩,所讨论的转子 - 定子布局产生用于电力驱动的所谓的外部转子,其中转子在外部与刀架在内部循环并且定子在内部安装 在房屋上
    • 6. 发明申请
    • Tool holder for machine tools and tool system for machine tools
    • 机床刀架和机床刀具系统
    • US20010039705A1
    • 2001-11-15
    • US09749724
    • 2001-06-29
    • Traub Drehmaschinen GmbH
    • Heinz ForstRainer KoenekeWerner Sonnek
    • B23Q001/25B23B007/04B23B029/24
    • B23B29/20Y10T29/5154Y10T29/5155Y10T29/5168Y10T29/519Y10T82/2508Y10T82/2585Y10T82/2587Y10T82/2591
    • In order to improve a tool support for machine tools comprising a base unit, a holding member which is arranged on the base unit and on which two supporting surfaces extending at an acute angle to one another are arranged for supporting a tool holder in a first supporting area and a second supporting area, and a clamping device for acting on a clamping member of the tool holder in a clamping direction extending in such a manner that the tool holder acts upon the supporting surfaces with the first and the second supporting areas, in such a manner that clamping of a tool holder is possible in as simple a way as possible it is suggested that the clamping element be mounted in the holding member for rotation about an axis and bear a wedge surface movable on a path around the axis for acting on the clamping member, and that the wedge surface of the clamping element engage over the clamping member proceeding from an insert position during the rotation of the clamping element in a first direction of rotation and act upon this clamping member so as to displace it increasingly in the clamping direction.
    • 为了改进包括基座单元的机床的工具支撑,布置在基座单元上并且彼此以锐角延伸的两个支撑表面布置的保持构件布置成用于将工具架支撑在第一支撑件 区域和第二支撑区域,以及夹紧装置,用于沿夹持方向作用在工具夹持器的夹持构件上,该夹紧方向以这样的方式延伸,使得刀架在第一和第二支撑区域作用在支撑表面上, 可能以尽可能简单的方式夹紧工具架的方式,建议将夹紧元件安装在保持构件中以围绕轴线旋转并且承载可在围绕轴线的路径上移动的楔形表面,以作用于 夹紧构件,并且夹紧元件的楔形表面在夹紧元件的旋转期间从第一直线 旋转并作用在该夹持构件上,以便在夹紧方向上逐渐移位。
    • 7. 发明申请
    • ROTATIONAL SENSOR MECHANICAL LIMITER FOR AUTOMATIC CALIBRATION
    • 用于自动校准的旋转传感器机械限制
    • US20030230153A1
    • 2003-12-18
    • US10172774
    • 2002-06-14
    • Logitech Europe S.A.
    • David McVicarDavid Wegmuller
    • B23B029/24G01N015/00
    • B60T7/06B60T7/042Y10T74/14Y10T74/20888
    • Embodiments of the present invention are directed to preventing calibration of a device to exceed the full design travel, for instance, during aggressive operation or play. A limiter is coupled to the rotational sensor to limit the full travel output signal to a fixed and repeatable maximum value no matter how aggressive the operation or play becomes. The limit is desirably set at such a point as normal operation or play will always reach. In this way, the automatic calibration of the device will not exceed the full design travel. In one embodiment, an input device comprises a user manipulable object configured to rotate around a rotational axis relative to a base. A rotational sensor includes a sensor body coupled with a sensor shaft which is rotatable relative to the sensor body around the rotational axis. The sensor shaft is connected with the user manipulable object to rotate with the user manipulable object around the rotational axis. An actuator is coupled with the user manipulable object to rotate with the user manipulable object. The actuator is configured to be coupled with the sensor body, after the user manipulable object has rotated to reach a preset limit, to rotate the sensor body with the sensor shaft and the user manipulable object beyond the preset limit.
    • 本发明的实施例旨在防止装置的校准超过整个设计行程,例如在侵略性操作或游戏过程中。 限制器耦合到旋转传感器,以将全行程输出信号限制到固定和可重复的最大值,而不管操作或播放变得多么积极。 期望设置在正常操作或始终达到播放的点。 以这种方式,设备的自动校准不会超过设计行程的全部。 在一个实施例中,输入装置包括被配置为围绕相对于底座的旋转轴线旋转的用户可操纵物体。 旋转传感器包括与传感器轴联接的传感器主体,该传感器轴可围绕旋转轴线相对于传感器本体旋转。 传感器轴与用户可操纵物体连接,以使用户可操纵物体围绕旋转轴线旋转。 致动器与用户可操纵物体耦合以与用户可操纵物体一起旋转。 致动器构造成在用户可操纵物体旋转到达预设极限之后与传感器主体耦合,以使传感器主体与传感器轴和用户可操纵物体旋转超过预设极限。