Investigation on lubrication characteristics and deformation control of hydrostatic bearing workbench

Hydrostatic bearings are widely exploited in precision machining and high-end equipment. Nonetheless, in scenarios involving high-speed and heavy-duty operations, the oil film possesses excessive heat generation due to shear and extrusion, leading to deformation of the hydrostatic bearing workbench, which affects machining accuracy and thermal stability. In view of the problem, this paper proposes a modification method to reduce the deformation. Hydrostatic bearing workbench under common working conditions is taken as the research object. Considering the viscosity-temperature effect, the variable viscosity fluid simulation of hydrostatic bearing oil film is carried out to investigate the lubrication characteristics. Based on the fluid-solid-thermal interaction method, the deformation characteristics of the hydrostatic bearing workbench are analyzed. According to the anti deformation principle, the guideway surface is modified to control the deformation of the hydrostatic bearing workbench. Finally, the interaction simulation analysis of the workbench after the structural modification shows that the structure modification achieves the expected effect. The oil film temperature is decreased and the bearing capacity is increased. The deformation of hydrostatic bearing workbench is significantly reduced.

相关文章

  • Research on the Lubrication Performance of Hydrostatic Thrust Bearings Considering Dynamic Pressure Effect and Oil Film Pressure Loss
    [Xiaodong Yu, Weicheng Gao, Hui Jiang, Yanan Feng, Jianhua Jiao, Ruichun Dai, Wentao Jia, Junfeng Wang]
  • Effects of differently shaped textures on the tribological properties of static and dynamic pressure thrust bearings and multiobjective optimization
    [Xiaodong Yu, Guangqiang Shi, Xinyi Yang]
  • Transcranial volumetric imaging using a conformal ultrasound patch
    [Sai Zhou, Xiaoxiang Gao, Geonho Park, Xinyi Yang, Baiyan Qi, Muyang Lin, Hao Huang, Yizhou Bian, Hongjie Hu, Xiangjun Chen, Ray S. Wu, Boyu Liu, Wentong Yue, Chengchangfeng Lu, Ruotao Wang, Pranavi Bheemreddy, Siyu Qin, Arthur Lam, Keith A. Wear, Michael Andre, Erik B. Kistler, David W. Newell, Sheng Xu]
  • 成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    润滑集