Study on surface topography of workpiece in prestress dry grinding

被引:0
|
作者
Yushi Wang
Shichao Xiu
Cong Sun
机构
[1] Northeastern University,School of Mechanical Design and Theory
关键词
Prestress dry grinding; Simulation; Wheel topography; Workpiece topography; Microstructure; Roughness; Waviness;
D O I
暂无
中图分类号
学科分类号
摘要
Workpiece surface topography has a significant influence on workpiece performance, especially on the roughness which has been a topic of extensive research. The workpiece surface topography can be considered as the result of individual grain action. This interaction is very complex depending on various factors involving the wheel topography, the grinding parameters, and the grinding temperature. The wheel surface is frequently non-Gaussian. In order to better research workpiece surface topography, a numerical procedure for generating the grinding wheel topography has been proposed, and the simulation of the grinding process is described in detail. The simulation considered the effect of temperature field on surface profile and the kinematic relationship between the grains and grinding wheel. The experiment of the grinding process is carried on 45 steel. The SEM micrograph shows that the roughness and waviness reduction with increase of prestress is consistent with the simulation results. The effect of prestress on phase transformation is analyzed; the metallographical micrographs show appropriate prestress can increase the thickness of the strengthened layer and refine grains. Therefore, prestress dry grinding is an effective method to improve workpiece surface properties.
引用
收藏
页码:2043 / 2053
页数:10
相关论文
共 50 条
  • [41] Numerical investigation of transient thermal stresses of workpiece in surface grinding
    Natl Tsing Hua Univ, Hsinchu, Taiwan
    J Therm Stresses, 6 (565-578):
  • [42] Experimental and numerical investigation into workpiece surface topology in point grinding
    Liu, Yueming
    Gong, Yadong
    Bauer, Robert
    Warkentin, Andrew
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART B-JOURNAL OF ENGINEERING MANUFACTURE, 2012, 226 (A11) : 1793 - 1800
  • [43] SURFACE LAYER PROPERTIES OF THE WORKPIECE MATERIAL IN HIGH PERFORMANCE GRINDING
    Gostimirovic, M.
    Kovac, P.
    Jesic, D.
    Skoric, B.
    Savkovic, B.
    METALURGIJA, 2012, 51 (01): : 105 - 108
  • [44] Numerical investigation of transient thermal stresses of workpiece in surface grinding
    Tsai, HH
    Hocheng, H
    JOURNAL OF THERMAL STRESSES, 1996, 19 (06) : 565 - 578
  • [45] Numerical modelling of surface topography in superabrasive grinding
    Suryarghya Chakrabarti
    S. Paul
    The International Journal of Advanced Manufacturing Technology, 2008, 39 : 29 - 38
  • [46] Evaluating method for topography of grinding wheel surface
    Yang, Yongsheng
    Wang, Min
    Jixie Gongyishi/Machinery Manufacturing Engineer, (11): : 7 - 8
  • [47] Numerical modelling of surface topography in superabrasive grinding
    Chakrabarti, Suryarghya
    Paul, S.
    International Journal of Advanced Manufacturing Technology, 2008, 39 (1-2): : 29 - 38
  • [48] Analysis and simulation of grinding wheel surface topography
    Lin, Bin
    Huang, Xinyan
    ADVANCES IN GRINDING AND ABRASIVE TECHNOLOGY XIV, 2008, 359-360 : 509 - 512
  • [49] Characterization of wheel surface topography in cBN grinding
    Fujimoto, M
    Ichida, Y
    Sato, R
    Morimoto, Y
    JSME INTERNATIONAL JOURNAL SERIES C-MECHANICAL SYSTEMS MACHINE ELEMENTS AND MANUFACTURING, 2006, 49 (01) : 106 - 113
  • [50] Temperature measurement of workpiece in surface grinding by PVD film method
    Kato, T.
    Fujii, H.
    Journal of Manufacturing Science and Engineering, Transactions of the ASME, 1997, 119 (04):