Prediction of thermo-elastic behavior in a spindle-bearing system considering bearing surroundings

被引:74
|
作者
Kim, SM [1 ]
Lee, SK [1 ]
机构
[1] Kwangju Inst Sci & Technol, Dept Mechatron, Puk Ku, Kwangju 500712, South Korea
关键词
spindle-bearing system; closed-loop concept; coupled system; system dynamics; bond graph; thermoelastic behavior; heat generation; bearing pressure; bearing surroundings;
D O I
10.1016/S0890-6955(00)00103-6
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper presents a simulation method based on system dynamics to establish a comprehensive prediction model for the thermal and mechanical behavior of a spindle-bearing system in consideration of bearing surroundings such as assembly tolerance, geometric dimension, cooling conditions, operating conditions and thermal deformation. By introducing a lumped element into the system, not only mechanical properties but also thermal behaviors can be readily examined and predicted. The most important behavior in the spindle-bearing system is the bearing pressure, which determines the spindle characteristics and friction moment. In this study three different simplified assemblies are investigated. One is the bearing inner race-shaft subassembly that includes a negative assembly clearance, and another is the outer race-housing assembly that includes a positive assembly clearance. The third is the entire system that is composed of a rolling element bearing, an inner race-shaft subassembly and an outer race subassembly. The two subassemblies are coupled by rolling elements in which the frictional moment and heat generation vary with the assembly clearance and thermal deformation of the bearing surroundings. The new method can be applied to spindle cooling as well as the optimal thermal and mechanical design of the spindle-bearing system for various surrounding conditions. Furthermore, on the basis of the proposed model, the effect of steel and ceramic bearing materials on the thermo-elastic behavior of the spindle system was investigated. (C) 2001 Published by Elsevier Science Ltd.
引用
收藏
页码:809 / 831
页数:23
相关论文
共 50 条
  • [41] Thermal-structure interaction characteristics of a high-speed spindle-bearing system
    Liu, Jialan
    Ma, Chi
    Wang, Shilong
    Wang, Sibao
    Yang, Bo
    Shi, Hu
    INTERNATIONAL JOURNAL OF MACHINE TOOLS & MANUFACTURE, 2019, 137 : 42 - 57
  • [42] Nonlinear response and nonsmooth bifurcations of an unbalanced machine-tool spindle-bearing system
    Gao, S. -H.
    Long, X. -H.
    Meng, G.
    NONLINEAR DYNAMICS, 2008, 54 (04) : 365 - 377
  • [43] Manufacture of a carbon fibre-epoxy composite spindle-bearing system for a machine tool
    Choi, JK
    Lee, DG
    COMPOSITE STRUCTURES, 1997, 37 (02) : 241 - 251
  • [44] Thermal-deformation coupling in thermal network for transient analysis of spindle-bearing system
    Yan, Ke
    Hong, Jun
    Zhang, Jinhua
    Mi, Wei
    Wu, Wenwu
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2016, 104 : 1 - 12
  • [45] Application of a hybrid-driven framework based on sensor optimization placement for the thermal error prediction of the spindle-bearing system
    Zhan, Ziquan
    Fang, Bin
    Wan, Shaoke
    Bai, Yu
    Hong, Jun
    Li, Xiaohu
    PRECISION ENGINEERING-JOURNAL OF THE INTERNATIONAL SOCIETIES FOR PRECISION ENGINEERING AND NANOTECHNOLOGY, 2024, 89 : 174 - 189
  • [46] Dynamic models and design of spindle-bearing systems of machine tools: A review
    Chi-Wei Lin
    Yang-Kuei Lin
    Chih-Hsing Chu
    International Journal of Precision Engineering and Manufacturing, 2013, 14 : 513 - 521
  • [47] Dynamic models and design of spindle-bearing systems of machine tools: A review
    Lin, Chi-Wei
    Lin, Yang-Kuei
    Chu, Chih-Hsing
    INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING, 2013, 14 (03) : 513 - 521
  • [48] Simulation of dynamic performance for hydro-hybrid spindle-bearing system of superhigh speed grinder
    Wang, W.S.
    Zhu, L.D.
    Yu, T.B.
    Shi, J.S.
    Li, H.
    Key Engineering Materials, 2009, 389-390 : 252 - 257
  • [49] Simulation of Dynamic Performance for Hydro-hybrid Spindle-Bearing System of Superhigh Speed Grinder
    Wang, W. S.
    Zhu, L. D.
    Yu, T. B.
    Shi, J. S.
    Li, H.
    ADVANCES IN ABRASIVE TECHNOLOGY XI, 2009, 389-390 : 252 - 257
  • [50] Optimization strategies for machine tool spindle-bearing systems: A critical review
    Brandon, J.A.
    Al-Shareef, K.J.H.
    Journal of engineering for industry, 1992, 114 (02): : 244 - 253