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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Fiber laser CNC tangential turing V-shaped concave diamond grinding wheel system based on machine vision technology
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Fiber laser CNC tangential turing V-shaped concave diamond grinding wheel system based on machine vision technology

机译:基于机器视觉技术的光纤激光CNC切向图V形凹金刚石砂轮系统

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摘要

In order to achieve high-precision V-shaped concave diamond grinding wheel by laser tangential turing, a high-precision laser-inspecting and tangential turing diamond grinding wheel system was built by utilizing high-pixel camera, double telecentric lenses, backlights, CNC grinding machine, and a fiber laser as the main hardware and adopting digital image processing technology as the processing method. The experimental results showed that the depth error rate of compensation turing was approximately 1/2 that of rough turing, and the width error rate was greatly reduced. After compensation turing, all of the evaluation indexes tended to improve. In particular, the error rate of compensation turing was approximately 1/6 that of rough turing. Under the optimized process parameters, the geometric parameters of the V-shaped concave contour and the error average difference were within 3%. Thus, the proposed approach effectively improves the shape and position error of the turing process. The experimental results showed that the system can detect the geometric profiles and size of the grinding wheel accurately and can obtain high turing precision effectively and quickly.
机译:为了通过激光切向图定实现高精度V形凹入金刚石砂轮,采用高像素摄像头,双电信镜头,背光,CNC研磨,建造了高精度激光检测和切向图定型金刚石砂轮系统机器和光纤激光器作为主要硬件和采用数字图像处理技术作为加工方法。实验结果表明,补偿图灵的深度误差率约为1/2的粗糙化,宽度误差率大大降低。在补偿后,所有评估指标往往改善。特别地,补偿图灵的错误率大约是粗糙化的1/6。在优化的过程参数下,V形凹轮廓的几何参数和误差平均差异在3%范围内。因此,所提出的方法有效提高了图灵过程的形状和位置误差。实验结果表明,该系统可以精确地检测磨轮的几何型材和尺寸,可以有效且快速地获得高雕刻精度。

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