Operational guidance system for measuring machine
    2.
    发明公开
    Operational guidance system for measuring machine 失效
    操作员Führungssystemfüreine Messmaschine

    公开(公告)号:EP0708392A1

    公开(公告)日:1996-04-24

    申请号:EP95116512.5

    申请日:1995-10-19

    发明人: Yoshida, Hitoshi

    IPC分类号: G05B19/409

    CPC分类号: G05B19/409

    摘要: According to the present invention there is provided an operational guidance system for a measuring machine comprising input means (11a, 11b), display means (16), first storage means (12) for storing a plurality of previously made programs for a measuring procedure, second storage means (14) for storing plural pieces of previously made operational guidance, calculating means (13) and instructing means (15). Operational procedures for a measuring machine are previously photographed and digitized to be memorized. When an operator selects a program for a measuring procedure of the measuring machine, an image and sound indicating the selected procedure in accordance with the program. When trouble occurs during the measurement, the image and sound indicating a method of dealing with the trouble are automatically displayed. Furthermore, when the operator gives an instruction, the image and sound indicating a maintenance and examination procedure are displayed.

    摘要翻译: 根据本发明,提供了一种用于测量机的操作引导系统,包括输入装置(11a,11b),显示装置(16),第一存储装置(12),用于存储多个先前制作的用于测量程序的程序, 第二存储装置(14),用于存储多个先前制作的操作指导,计算装置(13)和指令装置(15)。 测量机的操作程序先前被拍摄并数字化以被记忆。 当操作者选择测量机的测量程序的程序时,根据程序指示所选程序的图像和声音。 当测量过程中发生故障时,将自动显示指示处理故障的方法的图像和声音。 此外,当操作员给出指令时,显示指示维护和检查过程的图像和声音。

    Coordinate measuring machine and method of measuring therein
    3.
    发明公开
    Coordinate measuring machine and method of measuring therein 失效
    Koordinatenmessgerätund Messverfahren。

    公开(公告)号:EP0562606A1

    公开(公告)日:1993-09-29

    申请号:EP93104958.9

    申请日:1993-03-25

    发明人: Yoshida, Hitoshi

    IPC分类号: G01B5/00

    CPC分类号: G01B21/04

    摘要: A coordinate measuring machine and the method of measuring therein, where the instruction of the geometic shape is prevented from mistaking and the geometic shape of the workpiece is measured without interrupting the joystick operation. The measuring direction of the probe (36) and the measured value of workpiece (48) are taken in the data receiving part (42). The geometic shape calculation part (44) calculates the errors of each geometic shape based on the measured value from the data receiving part and the formula which was input previously and represents the geometic shape such as "a straight line or circle". And, the geometic shape recognition part (46) compares respective shape errors such as "a straight line and circle" which are calculated in geometic shape calculation part (44) and recognizes the geometic shape having the lowest shape errors. Further, the optimal geometic shape is recognized again based on the geometic shape having the lowest recognized shape errors and the measuring direction of the probe (36) which is input from said data receiving part (42). Therefore, the step for inputting the geometic shape of the workpiece (48) by the key can be removed before measuring. Moreover, the geometic shape can be recognized in a short time, because the geometic shape of workpiece (48) can be automatically set based on the characteristic such as "a point, straight line or circle" whenever the definite measured point of the geometic shape of the workpiece (48) is obtained.

    摘要翻译: 一种坐标测量机及其测量方法,其中防止了地球形状的指示错误,并且在不中断操纵杆操作的情况下测量工件的几何形状。 探头(36)的测量方向和工件(48)的测量值在数据接收部分(42)中获取。 地形形状计算部(44)基于来自数据接收部的测量值和先前输入的公式来计算各个几何形状的误差,并表示“直线或圆”等的地形。 并且,地球形状识别部(46)比较在地球形状计算部(44)中计算出的各种形状误差,例如“直线和圆”,并识别具有最小形状误差的几何形状。 此外,基于从所述数据接收部分(42)输入的探测器(36)的识别形状误差最小的测量方向和基于所述数据接收部分(42)输入的探测器(36)的测量方向,再次识别出最佳几何形状。 因此,在测量之前可以移除通过键输入工件(48)的几何形状的步骤。 此外,可以在短时间内识别出地球形状,因为每当地形形状的确定测量点,基于诸如“点,直线或圆”的特性,可以自动设置工件(48)的几何形状 的工件(48)。