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    • 1. 发明申请
    • Calibration method of an erosion machine and a grinding machine
    • 腐蚀机和磨床的校准方法
    • US20060074511A1
    • 2006-04-06
    • US10957634
    • 2004-10-05
    • Thomas EngelfriedHeinz HackhChristian Dilger
    • Thomas EngelfriedHeinz HackhChristian Dilger
    • G06F19/00
    • G05B19/401G05B2219/50143G05B2219/50144
    • A method for calibration of grinding and/or erosion machines assumes an initial calibration process and corresponding re-calibration processes. Calibration of the machine is performed with a reference piece and a reference tracer in an initial calibration process whereby the reference piece is fastened to a working spindle or a workpiece carrier and the reference tracer is fastened to the workpiece carrier or the working spindle. Grinding tests follow the first tracing process from all directions during which tests deviations are determined and made ineffective with the iterative procedure, especially deviations based on the tolerance of the tracer, which are an integral part of the tracing process. The machine-internal measuring system is calibrated immediately after performing the machining tests and thereby immediately after the initial referencing of the machining apparatus whereby the machine tracer and a test piece is traced from all coordinate directions and the resulting position values are stored. Subsequent re-calibrations supply measured values, which are compared to the stored values whereby correction values are determined then from the deviations for additional machining of workpieces.
    • 研磨和/或侵蚀机器的校准方法采用初始校准过程和相应的重新校准过程。 在初始校准过程中使用参考件和参考示踪器进行机器的校准,由此将参考件紧固到工作主轴或工件载体上,并且将参考示踪器紧固到工件托架或工作主轴上。 磨削测试遵循从所有方向进行的第一个跟踪过程,在此过程中测试偏差被确定,并且与迭代过程无关,特别是基于示踪器的公差的偏差,这是跟踪过程的组成部分。 机械内部测量系统在执行加工测试之后立即校准,并且在加工设备的初始参考之后立即被校准,从而从所有坐标方向跟踪机器示踪器和测试件,并且存储所得到的位置值。 随后的重新校准提供测量值,其与存储的值进行比较,从而从工件的附加加工的偏差确定校正值。
    • 2. 发明授权
    • Calibration procedures and such using an erosion and grinding machine
    • 校准程序等使用侵蚀磨床
    • US07103441B2
    • 2006-09-05
    • US10957634
    • 2004-10-05
    • Thomas EngelfriedHeinz HäckhChristian Dilger
    • Thomas EngelfriedHeinz HäckhChristian Dilger
    • G06F19/00
    • G05B19/401G05B2219/50143G05B2219/50144
    • A method for calibration of grinding and/or erosion machines assumes an initial calibration process and corresponding re-calibration processes. Calibration of the machine is performed with a reference piece and a reference tracer in an initial calibration process. Grinding tests follow the first tracing process from all directions during which tests deviations are determined and made ineffective with the iterative procedure. The machine-internal measuring system is calibrated immediately after performing the machining tests and thereby immediately after the initial referencing of the machining apparatus whereby the machine tracer and a test piece is traced from all coordinate directions and the resulting position values are stored. Subsequent re-calibrations supply measured values, which are compared to the stored values whereby correction values are determined then from the deviations for additional machining of workpieces.
    • 研磨和/或侵蚀机器的校准方法采用初始校准过程和相应的重新校准过程。 在初始校准过程中,使用参考件和参考示踪器进行机器的校准。 磨削试验遵循所有方向的第一个追踪过程,在此过程中确定测试偏差并使迭代过程无效。 机械内部测量系统在执行加工测试之后立即校准,并且在加工设备的初始参考之后立即被校准,从而从所有坐标方向跟踪机器示踪器和测试件,并且存储所得到的位置值。 随后的重新校准提供测量值,其与存储的值进行比较,从而从工件的附加加工的偏差确定校正值。
    • 3. 发明授权
    • Machine equipped with a temperature compensated lathe spindle
    • 机床配有温度补偿车床主轴
    • US06958588B2
    • 2005-10-25
    • US10250648
    • 2002-11-05
    • Thomas Engelfried
    • Thomas Engelfried
    • B23Q15/18B23Q1/70B23Q11/00B23Q17/22G05B11/01
    • B23Q11/0007B23Q1/70B23Q17/22
    • A machine for machining a workpiece with at least one revolving or rotating tool has a work spindle with a shaft (5), whose temperature is monitored by means of at least one temperature sensor (26). The temperature sensor is detected in contactless fashion. The sensor (26) is preferably a radiation-sensitive sensor, which detects the temperature radiation output. by the shaft (5). In triggering the positioning drive mechanisms, the control unit (35) of the machine (1) takes into account the temperature expansions of the shaft (5) that result from the temperature changes in the shaft. The positioning drive mechanisms serve to position a tool (6), carried by the shaft (5), relative to the workpiece (2). A machining precision is thus achieved that is independent of the temperature and temperature changes of the machine (1) overall, of temperature changes in the coolant—lubricant, and of temperature changes in the tool (6) and the shaft (5), that can all be caused by the power converted at the machining site.
    • 一种用于用至少一个旋转或旋转工具加工工件的机器具有带有轴(5)的工作主轴,其温度通过至少一个温度传感器(26)来监测。 以非接触方式检测温度传感器。 传感器(26)优选地是检测温度辐射输出的辐射敏感传感器。 通过轴(5)。 在触发定位驱动机构时,机器(1)的控制单元(35)考虑到由轴的温度变化导致的轴(5)的温度膨胀。 定位驱动机构用于定位由轴(5)承载的工具(6)相对于工件(2)。 因此,实现与机器(1)整体的温度和温度变化,冷却剂润滑剂的温度变化以及工具(6)和轴(5)中的温度变化无关的加工精度,即 都可以由在加工现场转换的功率引起。