Dynamic Analysis of a High-Speed Grinding Spindle

Author:

Pang Jing Zhu1,Li Bei Zhi1,Yang Jian Guo1,Wu Zhou Ping1

Affiliation:

1. Donghua University

Abstract

This paper presents the effects of spindle system configuration on the dynamic and static characteristics of high speed grinding. A 3D physical mode of high-speed grinding motorized spindle system with rotation speed of 150m/s was provided. The motorized spindle system consists of bearings, rotor, stator, spindle housing and grinding wheel. Based on the finite element method (FEM), the static characteristics, dynamic and the transient response are analyzed based on the finite element analysis software NASTRAN. It is shown that the spindle overhanging, bearing span have a significant effort on spindle deflection. The dynamic analysis shows no resonance will happen during its speed range. The methods and solutions for the motorized spindle system design and engineering applications was given in this paper.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference15 articles.

1. E. Abele, Y. Altintas, C. Brecher: Machine tool spindle units, CIRP Annals - Manufacturing Technology, Vol. 59 (2010), p.781–802.

2. S. Taylor, B.T. Khoo, D. Walton: Microcomputer optimization of machine tool spindle stiffnesses, International Journal of Machine Tools and Manufacture, Vol. 30(1990), p.151–159.

3. M. Qian S.Y. Jiang: Dynamic optimization of a high speed motorized spindle, China Mechanical Engineering, Vol. 16(2005), pp.24-28.

4. W.R. Wang, C.N. Chang: Dynamic analysis and design of a machine tool spindle-bearing system, Journal of Vibration and Acoustics, Transactions of the ASME Vol. 116(1994), p.280–285.

5. G. Hagiu, M.D. Gafiranu, Preload optimization: a high efficiency design solution for grinding machines main spindles, ASTM Special Technical Publication, No. 1247(1995).

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1. An Improvement of Model Analysis for Spindle Based on Finite Element Method;Advances in Engineering Research and Application;2018-11-20

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