Advanced Search
KANG Xian-min, WANG Lin, YANG Guo-fang, WANG Jian-sheng. Experimental research of increase-friction characteristics of no-match friction-pair surface based on laser micro-modelling[J]. LASER TECHNOLOGY, 2013, 37(4): 449-454. DOI: 10.7510/jgjs.issn.1001-3806.2013.04.008
Citation: KANG Xian-min, WANG Lin, YANG Guo-fang, WANG Jian-sheng. Experimental research of increase-friction characteristics of no-match friction-pair surface based on laser micro-modelling[J]. LASER TECHNOLOGY, 2013, 37(4): 449-454. DOI: 10.7510/jgjs.issn.1001-3806.2013.04.008

Experimental research of increase-friction characteristics of no-match friction-pair surface based on laser micro-modelling

More Information
  • Received Date: August 17, 2012
  • Revised Date: October 09, 2012
  • Published Date: July 24, 2013
  • In order to study effect of different surface textures on the friction characteristics of no-match friction-pairs, according to the frictional characteristics of no-match friction-pair, micro-pit network was produced on the specimen surface with continuous wave laser, then, the surface textures, friction and wear were measured for different macro-pit diameters, share ratio of processing area and mean depth. The conclusion reveals that the coefficient of surface friction gradually rises with the increase of micro-pit's depth, but the share ratio of microstructure area has no significant influence on the coefficient of friction.
  • [1]
    KANG X M, FU W P, HUANG W Q, et al. Numerical analysis of lubrication characteristics of laser texturing on motorcycle cylinder liner surface[J]. Laser Technology, 2010, 34(2): 227-231(in Chinese).
    [2]
    LIU Y, CHEN D R, YANG W Y. Experimental investigation of laser-textured on rolled with micro-convex topography[J]. Journal of Mechanical Engineering, 2003, 7(7):111-114(in Chinese).
    [3]
    LI Y, PEI X. Investigation on tribological behaviors of surface micro-forming 20CrNiMo steel under laser shock processing[J]. Laser Technology, 2012, 36(6):815-817(in Chinese).
    [4]
    LUO Zh G, FAN B B, GUO X D, et al. The effect of laser texturing on tribology characteristics of drawing die surface[J]. Laser Technology, 2010, 34(2):161-164(in Chinese).
    [5]
    GUO X D. Study on the wear properties of laser textured surface of drawing die[J]. Manufacturing Technology Machine Tool, 2010(4):31-32(in Chinese).
    [6]
    FU Y H, SHI Y F, HUA X J, et al. Study on tribological performances of laser textured surfaces[J]. China Mechanical Engineering, 2011, 22(19):5-10(in Chinese).
    [7]
    REN L Q, YANG Zh J, HAN Zh W. Non-smooth wearable surfaces of living creatures and their bionic application[J]. Journal of Agricultural Machinery, 2005, 36(7):150-153(in Chinese).
    [8]
    WANG J D, CHEN D R, KONG X M, et al. Lubricating calculation for area contact of regular concave profiles[J]. Tsinghua Science and Technology, 2001, 41(2):43-46(in Chinese).
    [9]
    YAO Y Sh, YUAN G F, QIAN D C, et al. Optimization of laser surface texturing based on friction and wear test[J]. Lubrication Engineering, 2009, 34(4):26-28(in Chinese).
    [10]
    HE Y F, DU D, LIU Y, et al. Parametric analysis of pulsed Nd:YAG laser texturing process[J]. Laser Technology, 2003, 27(1):8-13(in Chinese).
    [11]
    WANG J D, CHEN D R, KONG X M. Study on lubrication of regular concave surface[J]. Tribology, 2003, 23(1):53-56(in Chinese).
    [12]
    WEN S Z, HUANG P. Tribology principle[M]. 3rd ed. Beijing: Tsinghua University Press, 2008:211-223(in Chinese).

Catalog

    Article views (9) PDF downloads (8) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return