标题: 微型铣刀自动化光学量测与检测系统之研究与开发
The Research and Development of an Automatic Optical Measurement and Inspection System for Mirco-Router
作者: 彭德保
PERNG DER-BAAU
国立交通大学工业工程与管理学系(所)
关键字: 微型铣刀;机器视觉;视觉量测;视觉检测;Micro-router;Machine Vision;Vision Measurement;Vision Inspection
公开日期: 2008
摘要: PCB 生产制程中,由于产能需求大、精密度要求高,再加上板材复杂化,因此高转速、高精度、高进刀速的成型机已渐被采用,而要实现高速成型及高精度加工目的,PCB成型铣刀的品质便是关键因素之一。
铣刀的外径、刃长与刀刃的完整性,为其品质评估的指标。传统上,微型铣刀的外径,量测多数是利用雷射量测仪来进行。然而雷射量测仍有定位上的问题,而微型铣刀其刀刃上的瑕疵,传统上多利用高倍率的显微镜放大后,再经由人工进行检验,此方法也会有因目视检测而造成检测品质不稳定的问题。
因此,本研究旨在开发出以机器视觉技术为基础之微型铣刀的量测检测系统,此系统可以用来量测微型铣刀的刀径、刃长与检测微型铣刀常见的刀刃上的瑕疵,如缺角、崩刃、鱼尾缺损与无鱼尾等瑕疵。且希望此系统之准确度可以作为维持微型铣刀良好品质的辅助工具。然而微型铣刀有许多不同的种类,其应用范围也不尽相同,所以在本计画中,微型钻石目铣刀是检测的对象。由于钻石目铣刀有许多不同的规格,所以量测刀径与刃长是用来确保微型铣刀基本品质的重要指标。然而检测刀径与刃长仅可确保微型铣刀的基本品质,因此仍须更进一步检测其常见的刀刃缺陷,要检测这些缺陷,即需要有特殊设计的光源辅助照明,用来凸显出刃面纹路的特征,方可取得其清晰之影像,再利用影像处理的演算法找出缺陷的所在,以更进一步确保微型铣刀的品质。本研究拟采用最小灰阶值影像当作微型铣刀的残影影像,以次像素计算用来量测微型铣刀的外径与刃长。至于非鱼尾部分微型铣刀瑕疵,本研究拟利用影像重组的方法,重组出一张可用来表示微型铣刀表面的等高线图,利用影像处理技术来分析此等高线图,用以检测出非鱼尾部分微型铣刀瑕疵的位置。而鱼尾部分的瑕疵,本研究拟采用一聚光光源,放置在一设定的角度上,以凸显鱼尾刃面的瑕疵,以此来检测鱼尾部分的瑕疵。
This project is to develop a machine vision system for the measurement and inspection of the micro-router. A kind of diamond-patterned micro-router which formed by inter-woven spiral blades on the micro-router’s cylindrical surface is the target to be inspected. There are two critical issues to be processed. The first issue is about the speed and accuracy in measuring both width and length of the micro-router. The second issue is about the defects of micro-routers, which will affect the product quality. To solve the first issue, some laser system is traditionally used. However, it is quite expensive and difficult to be adjusted or aligned automatically. For the second issue, human inspection is commonly adopted by the aid of microscope. But it is slow and unstable. So, a machine vision system, including a set of AOI hardware and software algorithm, is proposed and to be developed for auto-measuring and inspecting the micro-router in this project.
We divide the proposed system into two sub-systems, including auto-measurement and inspection sub-system. In the auto- measurement sub-system, we attempt to use the minimum gray-value image of contour images to measure the diameter and width of a micro-router in sub-pixel accuracy. In the micro-router inspection sub-system, we attempt to utilize surface reconstruction to reconstruct a set of isograms for representing the surface of a micro-router. And then analyze the isograms by image processing technology to identify the position of the flank-side defect. We attempt to use the spotlighted illumination to highlight the front side defect. Finally, the position of defect will be identified according to the scanning result in polar coordinates. The proposed AOI system can be used as an assistant tool for micro-router quality assurance.
官方说明文件#: NSC96-2221-E009-077-MY3
URI: http://hdl.handle.net/11536/102328
https://www.grb.gov.tw/search/planDetail?id=1579768&docId=270444
显示于类别:Research Plans