• Title/Summary/Keyword: Laser Marking

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Perception Method of the Marking Location for Automation of Billet Marking Processes (빌릿 마킹 공정의 자동화를 위한 마킹 위치 인식 방법)

  • Park Jin-Woo;Yook Hyunho;Che Wooseong;Boo Kwangsuck
    • Journal of the Korean Society for Precision Engineering
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    • v.22 no.6 s.171
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    • pp.127-134
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    • 2005
  • The machine vision has been applied to a number of industrial applications for quality control and automations to improve the manufacturing processes. In this paper, the automation system using the machine vision is developed, which is applicable to the marking process in a steel production process line. The working environment is very harsh to workers so that the automatic system in the steel industry is required increasingly. The developed automatic marking system consists of several mechanical and electrical elements such as the laser position detecting sensor system fur a structured laser beam which is projected to the billet in order to detect the geometry of the billet. An image processing algorithm has been developed to percept the two center positions of a camera and a billet, respectively, and to align two centers. A series of experiments has been conducted to investigate the performance of the proposed algorithm. The results show that two centers of the camera and the billet could be detected very well and differences between two center positions could be also decreased via the proposed location error decreasing algorithm.

Laser Marking for Light Guide Panel using Design of Experiment and Web-based Prototyping System (실험계획법과 웹기반 시스템에 의한 도광판의 레이저 마킹)

  • Kang Hyuk-Jin;Kim Hyung-Jung;Chu Won-Sik;Ahn Sung-Hoon
    • Journal of the Korean Society for Precision Engineering
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    • v.23 no.4 s.181
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    • pp.91-98
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    • 2006
  • A light guide panel (LGP) is an element of the LCD back light unit, which is used for display devices. In this study, the laser marking process is applied to the fabrication of light guide panels as the new fabrication process. In order to obtain a light guide panel which has high luminance and uniformity, four principal parameters such as power, scanning speed, ratio of line gap, and number of line were selected. A Web-based design tool was developed to generate patterns of light guide panel at any location, and the tool may assist the designer to develop optimized patterns. Topcon-BM7 was used for luminance measurement of each specimen with $100mm{\times}100mm$ area. By Taguchi method optimized levels of each parameters were found, and luminance of $3523cd/cm^2$ and uniformity of 92% were achieved using the laser machined BLU.

Development of a high-performance controller for Laser Marking system using Galvanometer

  • Hyun, Bang-Seoung;Gi, Hong-Sun;Sam, Kang-Tae
    • 제어로봇시스템학회:학술대회논문집
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    • 2001.10a
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    • pp.111.5-111
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    • 2001
  • This paper places great importance on performance improvement of Galvanometer system used for laser display, laser processing, marking system. Fundamentally, we implement control system, on that assumption that laser source exists, and design basic PID controller. Hardware is composed of DSP(TMS320C32) chip, and the position compensation of Galvanometer is performed by using 16-bit A/D and D/A converter. Through frequency response analysis and simulation, the attribute of plant and controller is captured and then, total system is analyzed. We deliberate noise problem that can be caused from analog signal as driving signal for Galvanometer.

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Controller Design of a galvanometer for Laser Marking Equipment (레이저 마킹 장비를 위한 갈바노미터의 제어기 설계)

  • 방승현;홍선기;김수길;강태삼
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.17 no.3
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    • pp.25-31
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    • 2003
  • In this paper, proposed is a control system for a galvanometer which is widely used fer laser display, laser processing and marking systems. The galvanometer with mirror is modeled as a second-order dynamic system Based on frequency responses and time domain responses of the developed model, a conventional PID controller is designed And it is implemented using a DSP(TMS320C32) chip with precision A/D and D/A converters. Through frequency response and experimental results, it is convinced that the proposed control system works well in real environment. Furthermore it is very easy to be connected to any PC because of USB communication port, and the cost of the marking system can be lowered very much because the DSP do the all the jobs for generating font motion as well as controlling the galvanometer.