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DU Han, CHEN Genyu, ZHOU Cong, ZHOU Xu, WANG Yanyi. Design of detection system of fiber laser online shaping diamond wheel[J]. LASER TECHNOLOGY, 2016, 40(6): 930-934. DOI: 10.7510/jgjs.issn.1001-3806.2016.06.032
Citation: DU Han, CHEN Genyu, ZHOU Cong, ZHOU Xu, WANG Yanyi. Design of detection system of fiber laser online shaping diamond wheel[J]. LASER TECHNOLOGY, 2016, 40(6): 930-934. DOI: 10.7510/jgjs.issn.1001-3806.2016.06.032

Design of detection system of fiber laser online shaping diamond wheel

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  • Received Date: October 07, 2015
  • Revised Date: November 26, 2015
  • Published Date: November 24, 2016
  • In order to realize the desired shaping precision of fiber laser online-selective shaping diamond wheel, a fiber laser online shaping diamond wheel system was built by utilizing the computer, charge coupled device(CCD) sensor, PCIe-6361 data acquisition card as the main hardwares and LabVIEW software as the computer development tools. The system can not only realize diamond wheel shaping with laser on line, but also achieve high precision measurement on the surface profile of the grinding wheel and data storage in a short time. Experimental results show that, after the measurement of wheel contour, when the system of fiber laser shaping diamond grinding wheel is set with diamond wheel shaping threshold of 38.23m, power of 35W, repetition frequency of 50kHz, the maximum height of wheel after shaping is under 38m. The system design can meet the shaping requirements of diamond wheel.
  • [1]
    KANG R K,YUAN J T,SHI X K,et al. Study on laser dressing of superabrasive grinding[J].China Mechanical Engineering,2000,11(5):493-496(in Chinese).
    [2]
    WESETKAMPER E. Grinding assisted by Nd:YAG laser[J]. CIRP Annals-Manufacturing Technology,1995,44(1):317-320.
    [3]
    ZHANG C H, SHIN Y C. Wear of diamond dresser in laser assisted truing and dressing of vitrified CBN wheels[J]. International Journal of Machine Tools Manufacture,2003,43(1):41-49.
    [4]
    CHEN G Y, CHEN Ch, BU Ch, et al. Laser online bronze diamond grinding wheel finishing numerical simulation and experiment[J]. Laser Technology,2012,36(4):433-437(in Chinese).
    [5]
    ZUO D W, KAWANO Y. Effect of CO2 pulsed laser scaning on diamond wheel pleces[J]. Chinese Journal of Mechanical Engineering,1999, 35(2):42-45(in Chinese).
    [6]
    CHEN G Y,LI Z G,DENG H,et al. The experimental studies of dressing of bronze-bonded diamond grinding wheels using a pulsed fiber laser[J]. Laser Technology, 2013,37(6):705-711(in Chinese).
    [7]
    CHEN G Y, CHEN G G, HUANG K,et al. Study on the accuracy for laser truing and dressing of bronze-bonder diamond wheels[J]. Chinese Journal of Lasers,2009,36(5):1278-1281(in Chinese).
    [8]
    WANG X Y,WU Y B,WANG J,et al. CBN wheel cylinder angle of incidence of the effect of laser trimming[J]. Journal of Dalian University of Technology, 2005,45(5):672-675(in Chinese).
    [9]
    WANG Y,HU D J, DENG Q L,et al. Analysis of temperature field for laser assisted mechanical dressing and truing of diamond grinding wheel[J]. Chinese Journal of Lasers, 2005, 32(3):431-435(in Chinese).
    [10]
    CHEN G Y, ZHU D J, PENG K, et al. Experiment and evaluation of laser dressing diamond wheels dressing by pulsed laser[J]. Chinese Journal of Lasers,2007,34(4):245-249(in Chinese).
    [11]
    PAHK H J, STOUT K, BLUNT L. A comparative study on the three-dimensional surface topography for the polished surface of femoral head[J]. The International Journal of Advanced Manufacturing Technology,2000,16(8):564-570.
    [12]
    WANG X J, WANG J, WANG L. Laser triangulation method were reviewed[J]. Chinese Journal of Scientific Instrument, 2004,25(4):601-608(in Chinese).
    [13]
    LU J R,HUANG Y Q. Laser triangulation measuring surface topography[J]. Journal of Xiamen University, 2004,43(1):50-53(in Chinese).
    [14]
    FENG G Y,SHI L S,YUE Z P. A new type of process control method based on LabVIEW and implementation[J]. Journal of Electronic Measurement and Instrument,2007,21(4):77-81(in Chinese).
    [15]
    TIAN J M,GONG C L,JI L H,et al. Car wheel speed sensor measurement and control system design based on LabVIEW[J]. Instrument Technique and Sensor,2010(6):21-24(in Chinese).
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