Advanced Search

ISSN1001-3806 CN51-1125/TN Map

Volume 39 Issue 3
Mar.  2015
Article Contents
Turn off MathJax

Citation:

Measurement of glass bubble size based on laser vision principle

  • Received Date: 2014-05-07
    Accepted Date: 2014-06-17
  • In order to measure glass bubble size in real time, a dynamic system for measuring glass bubble was built in laboratory with a linear laser diode, a linear CCD and a movement control system based on the laser vision principle. The laser spot projected onto the glass surface was imaged on the photosensitive array of the camera through its zoom lens. Gray images of glass bubbles were grabbed by Sapera CamExpert software with the combination of the transverse scanning of the camera and the longitudinal scanning of the movement platform. The transverse and longitudinal precision of gray images was discussed in theory. The criterion for distinguishing the bubble images from distortion was confirmed and the matching relationship between the clock frequency of work pixels and the longitudinal velocity of the float glass was deduced. Bubble gray images were grabbed at the different longitudinal velocities. The transverse and longitudinal pixel number of glass bubbles was measured by the Sapera Architect. The transverse and longitudinal size of bubbles was acquired by theoretical calculation. Comparing with bubble size measured with a ruler, the relative error of the longitudinal size is 0.18 and of the transverse size is 0.05. The results show that in the case that camera work distance, focal length and pixel cell size are fixed, the transverse size of glass bubbles can be measured by this system in the range of permitted errors.
  • 加载中
  • [1]

    WANG S Zh, WANG Zh B, JIN Y, et al. Research of recognition technology for glass defect based on BP neural network[J]. Modern Electronics Technique, 2010, 33(14):45-48(in Chinese).
    [2]

    WANG Y, LIN S B, MIAO X R. Application of machine vision in detection of glass defect based on LabVIEW[J]. Industrial Control Computer, 2011, 24(4):75-77(in Chinese).
    [3]

    WEI T, WANG Zh B, JIN Y, et al. Study on glass defect inspection technology based on image reconstruction[J]. Control and Instruments in Chemical Industry, 2010, 37(6):58-61(in Chinese).
    [4]

    WANG F, CUI F K, LIU J T, et al. The system research for on-line defect inspection of flat glass[J]. Journal of Applied Optics, 2010, 31(1):95-99(in Chinese).
    [5]

    PENG X Q, CHEN Y P, XIE J M, et al. Research on online defect inspection and recognition for float glass fabrication[J]. Glass Enamel, 2010, 38(1):1-6(in Chinese).
    [6]

    DU X Q, YU B Y, JIN Y. Study on inspection of glass defect by CCD array[J]. Glass, 2009, 36(3):3-6(in Chinese).
    [7]

    SUN Ch K, YE Sh H. Laser measurement technology[M]. Tianjin: Tianjin University Press, 2001:129-143(in Chinese).
    [8]

    HUO L, ZHANG A J, LIU W J, et al. Research on the extraction of laser-knife center based on 3-D vision measuring data with line-structured light[J]. Computer Applications and Software, 2006, 23(10):100-102(in Chinese).
    [9]

    LI X Y, LU Ch H, ZHANG J Ch, et al. An image acquistion method for raised characters based on laser vision technology[J]. Optics and Lasers in Engineering, 2013, 51(2):148-158.
    [10]

    ZHOU X L, JIANG N D, XIAO W X, et al. Measurement method for mean texture depth of asphalt pavement based on laser vision[J]. China Journal of Highway and Transport, 2014, 27(3):11-15(in Chinese).
    [11]

    CHEN G, ZHAO Ch M, JI R Y, et al. Simulation design of semiconductor laser collimation based on ZEMAX[J]. Laser Technology, 2012, 36(3):318-325(in Chinese).
  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Article views(2845) PDF downloads(557) Cited by()

Proportional views

Measurement of glass bubble size based on laser vision principle

  • 1. College of Science, Yanshan University, Qinhuangdao 066004, China;
  • 2. College of Liren, Yanshan University, Qinhuangdao 066004, China

Abstract: In order to measure glass bubble size in real time, a dynamic system for measuring glass bubble was built in laboratory with a linear laser diode, a linear CCD and a movement control system based on the laser vision principle. The laser spot projected onto the glass surface was imaged on the photosensitive array of the camera through its zoom lens. Gray images of glass bubbles were grabbed by Sapera CamExpert software with the combination of the transverse scanning of the camera and the longitudinal scanning of the movement platform. The transverse and longitudinal precision of gray images was discussed in theory. The criterion for distinguishing the bubble images from distortion was confirmed and the matching relationship between the clock frequency of work pixels and the longitudinal velocity of the float glass was deduced. Bubble gray images were grabbed at the different longitudinal velocities. The transverse and longitudinal pixel number of glass bubbles was measured by the Sapera Architect. The transverse and longitudinal size of bubbles was acquired by theoretical calculation. Comparing with bubble size measured with a ruler, the relative error of the longitudinal size is 0.18 and of the transverse size is 0.05. The results show that in the case that camera work distance, focal length and pixel cell size are fixed, the transverse size of glass bubbles can be measured by this system in the range of permitted errors.

Reference (11)

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return