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    • 5. 发明授权
    • Detecting assembly for a multi-axis machine tool
    • 检测多轴机床的组件
    • US07852478B1
    • 2010-12-14
    • US12708481
    • 2010-02-18
    • Wen-Yuh JyweChien-Hung LiuTung-Hui HsuChia-Ming Hsu
    • Wen-Yuh JyweChien-Hung LiuTung-Hui HsuChia-Ming Hsu
    • G01B11/00
    • G01B11/03B23Q17/24B23Q2230/002
    • A detecting assembly for multi-axis machine tools having a spindle and a turntable and has a detector, a lens device and a computer. The detector is connected to the spindle and has a mounting frame and two detecting segments. The mounting frame is connected to the spindle and has a connecting rod, a bottom board and multiple mounting boards. The detecting segments are mounted on the mounting boards and each has a light source and a sensor. The lens device is mounted on the turntable, extends into the detector and has a supporting shaft and a spherical lens. The spherical lens is mounted on an upper end of the supporting shaft to align light emitted from the light sources with corresponding sensors via the spherical lens. The computer is electrically connected to the detector to receive signals of the detecting segments of the detector and has a signal processor.
    • 一种用于具有主轴和转台的多轴机床的检测组件,并具有检测器,透镜装置和计算机。 检测器连接到主轴,并具有安装框架和两个检测段。 安装框架连接到主轴,并具有连杆,底板和多个安装板。 检测段安装在安装板上,每个具有光源和传感器。 透镜装置安装在转台上,延伸到检测器中,并具有支撑轴和球面透镜。 球面透镜安装在支撑轴的上端,以通过球面透镜将来自光源的光与对应的传感器对准。 计算机电连接到检测器以接收检测器的检测段的信号,并具有信号处理器。
    • 8. 发明申请
    • Geometric Error Measuring Device
    • 几何误差测量装置
    • US20110102778A1
    • 2011-05-05
    • US12612400
    • 2009-11-04
    • Wen-Yuh JyweTeng-Yu YangTung-Hui Hsu
    • Wen-Yuh JyweTeng-Yu YangTung-Hui Hsu
    • G01B11/27
    • G01B11/002
    • A geometric error measuring device includes a measuring module and at least one (quadrant) photodiode. The measuring module has an emitting deice, which may emit at least one light ray; the photodiode may receive the incident ray. Also, the trajectory of the incident ray is parallel with the direction of measurement. If there is no geometric error, the position of the incident light ray will coincide with the position of the measured light ray. If there is a geometric error, the position of the measured light ray will not coincide with the position of the incident light ray. After the data are processed and calculated, geometric errors in straightness, squareness and rotational angles (pitch, yaw and roll) may be obtained. These geometric errors may then be corrected in the setup of a machine.
    • 几何误差测量装置包括测量模块和至少一个(象限)光电二极管。 测量模块具有可发射至少一个光线的发射导体; 光电二极管可以接收入射光线。 此外,入射光线的轨迹与测量方向平行。 如果没有几何误差,则入射光线的位置与被测光线的位置一致。 如果存在几何误差,则测量光线的位置与入射光线的位置不一致。 在处理和计算数据之后,可以获得平直度,矩形度和旋转角度(俯仰,偏航和滚动)的几何误差。 然后可以在机器的设置中校正这些几何误差。
    • 9. 发明授权
    • Method of numerical-control scraping of a work piece
    • 数控刮削工件的方法
    • US09244458B2
    • 2016-01-26
    • US13354548
    • 2012-01-20
    • Wen-Yuh JyweTung-Hsien HsiehChia-Hung ChenChin-Hui HuangYing-Chien TsaiYen-Chieh Wang
    • Wen-Yuh JyweTung-Hsien HsiehChia-Hung ChenChin-Hui HuangYing-Chien TsaiYen-Chieh Wang
    • G05B19/4097
    • G05B19/4097G05B2219/49084
    • A method of numerical-control scraping of a work piece has a preparing step, a scanning step, a flatness-parameter inputting step, a surface-finishing step, a related-parameter inputting step, an auto-scraping step and an analyzing step. The preparing step comprises preparing a multi-axis machine tool, a laser displacement meter, an auto scraping apparatus and a computer. The scanning step comprises scanning the work piece. The flatness-parameter inputting step comprises inputting a flatness-parameter. The surface-finishing step comprises calculating out the to-be-scraped ranges of the work piece and scraping the work piece. The related-parameter inputting step comprises inputting desired PPI and POP in the computer, calculating out the HOP, the DOS and the oil content to obtain the length, the width and the depth of a single scraping process. The auto-scraping step comprises scraping the work piece to meet the requirement. The analyzing step comprises detecting the 3D-appearance drawing of the work piece.
    • 一种数控刮削工件的方法具有准备步骤,扫描步骤,平坦度参数输入步骤,表面精加工步骤,相关参数输入步骤,自动刮除步骤和分析步骤。 制备步骤包括制备多轴机床,激光位移计,自动刮除装置和计算机。 扫描步骤包括扫描工件。 平坦度参数输入步骤包括输入平坦度参数。 表面精加工步骤包括计算工件的被刮削范围并刮擦工件。 相关参数输入步骤包括在计算机中输入所需的PPI和POP,计算出HOP,DOS和油含量,以获得单次刮除过程的长度,宽度和深度。 自动刮削步骤包括刮擦工件以满足要求。 分析步骤包括检测工件的3D外观图。