Improvement Technology and Research Contents of Machining Accuracy for CNC Machine Tools

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To bring a new technological revolution, CNC technology and machines give the birth of a new era of control and production. The rapid development of CNC has considerably advanced the precision and ultra-precision machining technology to improve a new level and great attention. From error prevention and compensation, researches of the CNC machines precision at home and abroad were introduced. Key reasons for error compensation hardly use in the domestic widely were pointed out. Finally, the necessity and main contents of error compensation technology were presented according to the actual situation of enterprises.

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195-200

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September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Ni Jun, A Perspective Review of CNC Machine Accuracy Enhancement through Real-time Error Compensation [J], China Mechanical Engineering. vol. 8(1997), pp.29-34.

Google Scholar

[2] Jianguo Yang, Yongqiang Ren, Weibin Zhu, et al. Research on On-line Modeling Method of Thermal Error Compensation Model for CNC Machines, Chinese Journal of Mechanical Engineering. vol. 39(2003), pp.81-84.

DOI: 10.3901/jme.2003.03.081

Google Scholar

[3] Shiping Su, Study on the Methods of Precision Modeling and Error Compensation for Multi-Axis CNC Machine Tools, D. National University of Defense Technology. (2002).

Google Scholar

[4] Xiaoli Li, Modeling and Compensation for the Comprehensive Geometric Errors of NC Machine Tools, D. Huazhong University of Science and Technology. (2006).

Google Scholar

[5] Huanlao Liu, Research on the Geometric Error Measurement and Error Compensation of the Numerical Control Machine Tools, D. Huazhong University of Science and Technology. (2005).

Google Scholar

[6] R. Hocken, A.J. Simpon, et al. Three Dimensional Metrology, J. Annals of the CIRP. Vol. 26(1997), pp.403-408.

Google Scholar

[7] P.M. Ferreira, C.R. Liu, An Analytical Quadratic Model for the Geometric Error of A Machine Tool, J. Journal of Manufacturing Systems. vol. 5(1986), pp.51-63.

DOI: 10.1016/0278-6125(86)90067-1

Google Scholar

[8] S. Yang, J. Yuan, J. Ni, The Improvement of Thermal Error Modeling and Compensation on Machine Tools by CMAC Neural Network, J. International Journal of Machine Tools and Manufacture. 1996, vol. 36(1996), pp.527-537.

DOI: 10.1016/0890-6955(95)00040-2

Google Scholar

[9] Youwu Liu, Libing Liu, Xiaosong Zhao, et al. Investigation of Error Compensation Technology for NC Machine Tool, J. China Mechanical Engineering. 1998, 9(12): 48-52.

Google Scholar

[10] G. Zhang, R. Yang Ou, B. Lu, A Displacement Method for Machine Geometry Calibration, J. Annals of the CIRP. vol. 37(1988), pp.515-518.

DOI: 10.1016/s0007-8506(07)61690-4

Google Scholar

[11] G.Q. Chen, J.X. Yuan, J. Ni, A Displacement Measurement Approach for Machine Geometric Error Assessment, J. International Journal of Machine Tools & Manufacture. vol. 41(2001), pp.149-161.

DOI: 10.1016/s0890-6955(00)00049-3

Google Scholar

[12] Zhiyong Qu, Weishan Chen, Yao Yu, Research on Volumetric Error Identification of Guide, J. Chinese Journal of Mechanical Engineering. vol. 42(2006), pp.201-205.

Google Scholar