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On-line tool wear measurement for ball-end milling cutter based on machine vision

机译:基于机器视觉的球头铣刀在线刀具磨损测量

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摘要

Cutting tool wear is known to affect tool life, surface quality and production time. In this paper, a new online tool wear measuring algorithm is proposed to acquire tool wear using machine vision in order to establish on-line tool wear monitoring model for assessing degree of wear and remaining useful tool life. The algorithm first adopts machine vision to acquire tool wear images from CCD camera on-line for ball-end cutter. Tool tip points are determined and wear detection areas are optimized within captured tool wear images. Tool wear images before machining and in machining process are captured to compare the corresponding image column for judging whether this image column has emerged wear. Then the initial detection of wear edge points with pixel accuracy is given to scan pixel columns within the constructed wear detection areas in vertical direction. The exact detection algorithm of wear edge points with sub-pixel accuracy is proposed to increase the precision of detected wear edge points. The tool wear can be computed based on the detected wear edge points. Experimental work and validation of the established on-line tool wear measurement method are performed in a five-axis milling center by using stainless steel 1Crl8Ni9Ti and ball-end cutter of cemented carbide. The obtained measurement results by using the proposed method are compared with those gotten by measuring directly with microscope. The proposed method is shown to be reliable and effective for on-line tool wear measurement.
机译:众所周知,切削刀具的磨损会影响刀具的寿命,表面质量和生产时间。本文提出了一种新的在线工具磨损测量算法,以利用机器视觉获取工具磨损,以建立在线工具磨损监测模型,以评估磨损程度和剩余使用寿命。该算法首先采用机器视觉从CCD摄像机在线获取球头铣刀的刀具磨损图像。确定刀具尖端点并在捕获的刀具磨损图像内优化磨损检测区域。捕获加工之前和加工过程中的刀具磨损图像,以比较相应的图像列,以判断该图像列是否出现磨损。然后,给出具有像素精度的磨损边缘点的初始检测,以在垂直方向上扫描所构造的磨损检测区域内的像素列。提出了具有亚像素精度的磨损边缘点的精确检测算法,以提高检测到的磨损边缘点的精度。可以基于检测到的磨损边缘点来计算刀具磨损。通过使用1Crl8Ni9Ti不锈钢和硬质合金球头铣刀,在五轴铣削中心进行了实验工作并验证了已建立的在线刀具磨损测量方法。将使用该方法获得的测量结果与通过显微镜直接测量获得的结果进行比较。所提出的方法显示出在线工具磨损测量的可靠和有效。

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