Temperature Field Analysis in Grinding

被引:3
|
作者
Lishchenko, Natalia [1 ]
Larshin, Vasily [2 ]
机构
[1] Odessa Natl Acad Food Technol, 112 Kanatna St, UA-65039 Odessa, Ukraine
[2] Odessa Natl Polytech Univ, 1 Shevchenko Ave, UA-65044 Odessa, Ukraine
来源
ADVANCES IN DESIGN, SIMULATION AND MANUFACTURING II | 2020年
关键词
Grinding wheel; Grinding temperature; Moving heat source; THERMAL-ANALYSIS;
D O I
10.1007/978-3-030-22365-6_20
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The paper is devoted to solving an important scientific problem of determining the profile grinding temperature based on the choice of a not complex but at the same time adequate solution from the available analytical ones. The initial prerequisite for the paper developing concept is that of a moving heat source. In engineering applications, the moving heat source is often represented in the form of a moving contact zone between the grinding wheel and the workpiece surface. The source forms around itself a three-, two- or one-dimensional temperature field in the Cartesian coordinate system with (three-dimensional) and without (two- or one-dimensional) taking into account the influence of the source length in the direction, which is perpendicular to the direction of the source moving, respectively. There is another possibility to simplify the determination of grinding temperature by choosing a one-dimensional solution of the differential equation of heat conduction in which the moving heat source is absent and replaced by the time of action of an unmoving heat source. This time is equal to the ratio of the contact length (in the direction of moving) to the velocity of its movement. Due to the high speeds of the discontinuous profile grinding process, the replacement of the moving source with the unmoving (stationary) one often does not affect the accuracy of determining the profile grinding temperature on the surface and in a thin surface layer.
引用
收藏
页码:199 / 208
页数:10
相关论文
共 50 条
  • [31] Modeling of heat source in grinding zone and numerical simulation for grinding temperature field
    Lan, Shuailing
    Jiao, Feng
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2019, 103 (5-8): : 3077 - 3086
  • [32] Modeling of heat source in grinding zone and numerical simulation for grinding temperature field
    Shuailing Lan
    Feng Jiao
    The International Journal of Advanced Manufacturing Technology, 2019, 103 : 3077 - 3086
  • [33] ANALYSIS OF WORKPIECE TEMPERATURE AND GRINDING BURN IN CREEP FEED GRINDING
    OHISHI, S
    FURUKAWA, Y
    BULLETIN OF THE JSME-JAPAN SOCIETY OF MECHANICAL ENGINEERS, 1985, 28 (242): : 1775 - 1781
  • [34] Heat flux distribution model and transient temperature field analysis in grinding of helical raceway
    Guo, Zongfu
    Yi, Jun
    Hu, Xiaoping
    Wang, Jiugen
    Zhao, Kun
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2022, 121 (9-10): : 6497 - 6506
  • [35] Heat flux distribution model and transient temperature field analysis in grinding of helical raceway
    Zongfu Guo
    Jun Yi
    Xiaoping Hu
    Jiugen Wang
    Kun Zhao
    The International Journal of Advanced Manufacturing Technology, 2022, 121 : 6497 - 6506
  • [36] Simulation research on temperature field and stress field during rail grinding
    Huang, L. M.
    Ding, H. H.
    Zhang, S. Y.
    Zhou, K.
    Guo, J.
    Liu, Q. Y.
    Wang, W. J.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART F-JOURNAL OF RAIL AND RAPID TRANSIT, 2021, 235 (10) : 1278 - 1290
  • [37] On the temperature field during superficial grinding: an experimental study
    A. Aguiar Vieira
    A. Monteiro Baptista
    M. P. Lages Parente
    R. M. Natal Jorge
    The International Journal of Advanced Manufacturing Technology, 2009, 40 : 1084 - 1092
  • [38] MICRO-THERMOCOUPLE FOR MEASURING TEMPERATURE FIELD IN GRINDING
    TATARENKO, VV
    RUSSIAN ENGINEERING JOURNAL-USSR, 1969, 49 (01): : 53 - +
  • [39] Temperature field model in surface grinding: a comparative assessment
    Min Yang
    Ming Kong
    Changhe Li
    Yunze Long
    Yanbin Zhang
    Shubham Sharma
    Runze Li
    Teng Gao
    Mingzheng Liu
    Xin Cui
    Xiaoming Wang
    Xiao Ma
    Yuying Yang
    International Journal of Extreme Manufacturing, 2023, 5 (04) : 318 - 378
  • [40] Modeling and Simulation of Temperature Field in Rail Belt Grinding
    Gao G.
    Liu Y.
    Yang C.
    Zhao C.
    Hunan Daxue Xuebao/Journal of Hunan University Natural Sciences, 2024, 51 (04): : 105 - 113