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Research on the Measurement System of Large Dimension Workpieces Based on the Technology of CCD and Laser

机译:基于CCD和激光技术的大维工件测量系统研究

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摘要

A kind of the measurement technique of the dimension and the geometry error of large dimension workpiece with two light routes and two CCD sensors has been made. The mathematical models of the dimension and the geometry error based on the technology of CCD and laser are established. The application property parameter to measure workpiece dimension and geometry error and the design characteristic related supplemental hardware of CCD sensor are studied. An on-line data collection system based on laser and liner array CCD is developed. This systematic C8051 single-chip microcomputer as controler that adopt American CYGNAL company's production carry out handling and the collection of data. The system meets the measurement requirement of no-touch, on line and high precision with adopting of machine, laser and electricity comprehensive technology. The result can be got in this paper: the CCD sensor can meet the need of measuring dimension and geometry error of big workpiece and is no-touch, on line measurement and high precision. The on line collecting data system can achieve the expecting function, and measure data on line, and it also can easily connect with auto control apparatus.
机译:已经进行了一种具有两个光线和两个CCD传感器的大维工件的测量技术和大维工件的几何误差。建立了基于CCD和激光技术的维度和几何误差的数学模型。研究了用于测量工件尺寸和几何误差的应用程序属性参数以及CCD传感器的设计特征相关补充硬件。开发了一个基于激光和衬垫阵列CCD的在线数据收集系统。该系统C8051单片机作为采用美国Cygnal公司生产的控制器进行处理和数据集合。该系统符合无触控的测量要求,采用机器,激光和电力全面技术。结果可以获得本文:CCD传感器可以满足测量尺寸和大工件的几何误差的需要,并在线测量和高精度。在线收集数据系统可以实现期望功能,并在线测量数据,也可以轻松地与自动控制装置连接。

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