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Investigation of machine vision assisted automatic resharpening process of micro-drills

机译:机器视觉辅助微钻自动重磨过程的研究

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摘要

The micro-drill used in electronic industry is getting smaller in diameter especially for printed circuit board/ball grid array processing; making it is easier to have many defective drills produced in manufacturing process. Defective drills can be resharpened to become conforming products. Focusing on the planar micro-drills less than 0.5 mm in diameter, the paper proposes using machine vision technique to assist the double-wheel grinding mechanism of moving-drill and fixed wheel to achieve resharpening function. First, we find and adjust the posture of micro-drill from vision system for grinding, then detect the line equation of cutting edge of primary facet grinded micro-drill and rotate cutting edge to be horizontal; final we grind the secondary facet of micro-drill. All grinding parameters for resharpening process are found automatically with machine vision technology. As known from the experimental results, the automatic resharpening method proposed by this paper is feasible.
机译:电子工业中使用的微型钻头的直径越来越小,尤其是在印刷电路板/球栅阵列处理中;使得在制造过程中产生许多有缺陷的钻头变得容易。有缺陷的钻头可以重新磨成合格的产品。本文针对直径小于0.5mm的平面微钻,提出了利用机器视觉技术来辅助动钻和固定轮的双轮磨削机制来实现重新磨削的功能。首先,从视觉系统中找到并调整微钻的姿态进行磨削,然后检测磨削后的主刻面微刀的切削刃的直线方程,然后将刀刃水平旋转。最后,我们研磨微型钻头的第二个方面。机器视觉技术可自动找到用于重磨过程的所有磨削参数。从实验结果可以看出,本文提出的自动重磨方法是可行的。

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