Thermal error control method based on thermal deformation balance principle for the precision parts of machine tools

被引:1
|
作者
Zeji Ge
Xiaohong Ding
机构
[1] University of Shanghai for Science and Technology,School of Mechanical Engineering
关键词
Thermal error compensation system; High-precision machine tool; Thermal deformation balance principle; Heat transfer channel layout optimization; CFRP;
D O I
暂无
中图分类号
学科分类号
摘要
A new thermal error control method based on the thermal deformation balance principle is suggested to control the thermal error of a precision machine tool’s functional parts, which negatively affects processing precision. The compensation of the thermal expansion of metal by the thermal contraction of carbon fiber reinforced plastics (CFRPs), which has a negative linear expansion coefficient, lies behind this method. The metal structure is bonded with CFRP bandage and thermoelectric modules to achieve the temperature difference between the metal and the CFRP, thereby realizing the same thermal deformation. The heat transfer channel in the compensation system for thermal deformation is designed by the structural topology design method to distribute the heat evenly. Experimental and numerical simulation results show that the suggested approach reduces thermal displacement by 93% compared with the metal structure without the CFRP bandage. The suggested method can be applied to thermal deformation compensation for various high-precision equipment, including coordinate measuring machines, aerospace equipment, and optics and optical instruments.
引用
收藏
页码:1253 / 1268
页数:15
相关论文
共 50 条
  • [21] Thermal Error Prediction Method of CNC Machine Tools Based on Parallel Depth Belief Network
    Du, Liuqing
    Yu, Yongwei
    [J]. Nongye Jixie Xuebao/Transactions of the Chinese Society for Agricultural Machinery, 2020, 51 (08): : 414 - 419
  • [22] Robust modeling method for thermal error of CNC machine tools based on ridge regression algorithm
    Liu, Hui
    Miao, En Ming
    Wei, Xin Yuan
    Zhuang, Xin Dong
    [J]. INTERNATIONAL JOURNAL OF MACHINE TOOLS & MANUFACTURE, 2017, 113 : 35 - 48
  • [23] Robust modeling method for thermal error of CNC machine tools based on random forest algorithm
    Zhu, Mengrui
    Yang, Yun
    Feng, Xiaobing
    Du, Zhengchun
    Yang, Jianguo
    [J]. JOURNAL OF INTELLIGENT MANUFACTURING, 2023, 34 (04) : 2013 - 2026
  • [24] Robust modeling method for thermal error of CNC machine tools based on random forest algorithm
    Mengrui Zhu
    Yun Yang
    Xiaobing Feng
    Zhengchun Du
    Jianguo Yang
    [J]. Journal of Intelligent Manufacturing, 2023, 34 : 2013 - 2026
  • [25] A study to suppress machining error due to thermal deformation of ball screw of machine tools
    Research and Department, OKUMA Corporation, 5-25-1 Shimooguchi, Oguchi-cho, Niwa-gun, Aichi, 480-0193, Japan
    [J]. Nihon Kikai Gakkai Ronbunshu C, 2006, 5 (1667-1672):
  • [26] The error analysis and correction on traditional thermal deformation calculation method in precision measurement
    Huang, QX
    Fei, YT
    Cheng, XH
    Zhong, Y
    [J]. PROCEEDINGS OF THE FIRST INTERNATIONAL SYMPOSIUM ON INSTRUMENTATION SCIENCE AND TECHNOLOGY, 1999, : 157 - 161
  • [27] Research on thermal error compensation instrument based on thermal modal analysis for NC machine tools
    Yang, Bo
    Wang, Yi
    Yu, Wen Li
    Yao, Xin Hua
    Fu, Jian Zhong
    [J]. Advanced Materials Research, 2013, 819 : 76 - 80
  • [28] Coupling evaluation for material removal and thermal control on precision milling machine tools
    Kexu Lai
    Huajun Cao
    Hongcheng Li
    Benjie Li
    Disheng Huang
    [J]. Frontiers of Mechanical Engineering, 2022, 17
  • [29] Coupling evaluation for material removal and thermal control on precision milling machine tools
    Lai, Kexu
    Cao, Huajun
    Li, Hongcheng
    Li, Benjie
    Huang, Disheng
    [J]. FRONTIERS OF MECHANICAL ENGINEERING, 2022, 17 (01)
  • [30] Coupling evaluation for material removal and thermal control on precision milling machine tools
    LAI Kexu
    CAO Huajun
    LI Hongcheng
    LI Benjie
    HUANG Disheng
    [J]. Frontiers of Mechanical Engineering, 2022, 17 (01)