The Analysis and Research about Temperature and Thermal Error Measurement Technology of CNC Machine Tool

Article Preview

Abstract:

The existing problems of temperature measurement for CNC machine tool are pointed out through analyzing research results of temperature measurement methods, temperature measurement points optimum and temperature variables selection technology. The devices and properties of contact and non-contact temperature measurement are compared and evaluated. The error measurement devices and their technology development of CNC machine tool are described. The measurement methods and results of temperature and error are analyzed by testing on a concrete CNC machine tool. It is concluded that some objective rules exist in various machine tools. The locations of sensitive points for temperature and errors as well as its number can be defined.

You might also be interested in these eBooks

Info:

Periodical:

Key Engineering Materials (Volumes 392-394)

Pages:

40-44

Citation:

Online since:

October 2008

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2009 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] N.A. Abukhshim, P.T. Mativenga and M.A. Sheikh: International Journal of Machine Tools & Manufacture, Vol. 46 (2006), p.782.

Google Scholar

[2] M. Satoa, T. Uedab and H. Tanakaa: International Journal of Machine Tools & Manufacture, Vol. 47 (2007), pp. (2071).

Google Scholar

[3] S.S. Zhou, J.W. Fan, Z.J. Yue and G.P. Dong: Control & Automation, Vol. 21 (2005), p.58.

Google Scholar

[4] D.A. Krulewich: Mechatronics, Vol. 8 (1998), p.395.

Google Scholar

[5] X.L. Dou, J.G. Yang, H. Guan and W.G. Deng: Aviation Precision Manufacturing Technology, Vol. 39 (2003), p.33.

Google Scholar

[6] J.H. Shen, H.T. Zhao, H.T. Zhang and J.G. Yang: Journal of Shanghai Jiaotong University, Vol. 40 (2006), p.181.

Google Scholar

[7] J.G. Yang, Y.Q. Ren, G.L. Liu and H.T. Zhao: Int. J. Adv. Manuf. Technol, Vol. 26 (2005), p.814.

Google Scholar

[8] Y.X. Li, H.C. Tong and J.G. Yang: Machine Design and Research, Vol. 22 (2006), p.78.

Google Scholar

[9] J. G. Yang, Y. Q. Ren, W. B. Zhu, M.L. Huang and Z.H. Pan: Journal of Mechanical Engineering, Vol. 39 (2003), p.81.

Google Scholar

[10] J.M. Fan, L.M. Xu, X.M. Zhao, H. Fan and K.F. Huang: Chinese Journal of Scientific Instrument, Vol. 26 (2005), p.83.

Google Scholar

[11] C. Brecher and P. Hirsch: Annals of CIRP, Vol. 53 (2004), p.299.

Google Scholar

[12] J.S. Chen, T.W. Kou and S.H. Chiou: Precision Engineering, Vol. 23 (1999), p.243.

Google Scholar

[13] H. Zhang, Y.F. Zhou, X.Q. Tang and J.H. Chen: Chinese Journal of Mechanical Engineering, Vol. 38 (2002), p.96.

Google Scholar

[14] S.H. Li, Y.Q. Zhang and G.X. Zhang: International Journal of Machine Tools Manufacture, Vol. 37 (1997), p.1715.

Google Scholar

[15] H. Zhang, Y.F. Zhou, X.Q. Tang, J.H. Chen and H.M. Shi: Chinese Journal of Mechanical Engineering, Vol. 38 (2002), p.108.

Google Scholar

[16] D.S. Lee, J.Y. Choi and D.H. Choi: International Journal of Machine Tools & Manufacture, Vol. 43 (2003), p.589.

Google Scholar

[17] A.C. Okafor and Y.M. Ertekin: Journal of Materials Processing Technology, Vol. 105 (2000), p.394.

Google Scholar

[18] M.S. Hong, H. Su, Z.J. Li and Y.L. Wei: Chinese Journal of Mechanical Engineering, Vol. 38 (2002), p.90.

Google Scholar

[19] H.L. Liu, H.M. Shi, B. Li and H.C. Zhou: Journal of Huazhong University of Science and Technology (Natural Science Edition), Vol. 33 (2005), p.60.

Google Scholar

[20] J.H. Jung, J.P. Choi and S.J. Lee: Journal of Materials Processing Technology, Vol. 174 (2006), p.56.

Google Scholar