Optimization Algorithm of Tool Radius Compensation in Fast Tool Servo Machining of Microlens Arrays

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Abstract:

This paper analyzes the tool path generation of the microlens arrays by the single point diamond (FTS) turning,while focuses on the algorithm of tool radius compensation. Firstly, the mechanism of the fast tool servo machining process is introduced. Secondly, the tool path generation for FTS is calculated. The algorithm of tool radius compensation and the form error of the microlens is analyzed. Subsequently, the transitional zone is research, base on the algorithm of tool radius compensation, the optimized algorithm is proposed. Finally, using the optimized algorithm generate the tool path. Modeling of the tool path with the optimized algorithm of tool radius compensation is simulated with MATLAB. The simulation of the 3-D microlens arrays with the algorithm of tool radius compensation has done. According to the modeling of the simulation, algorithm of the radius compensation is discussed. The results show the optimized algorithm can improve the form accuracy of the microlens. The optimized algorithm is practical significant in the tool path generation.

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383-389

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October 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Hong Lu, Deugwoo Lee, Jongman Kim, et al. Modeling and machining evaluation of microstructure fabrication by fast tool servo-based diamond machining, J. Precision Engineering. 38 (2014) 212-216.

DOI: 10.1016/j.precisioneng.2013.06.004

Google Scholar

[2] L.B. Kong, C.F. Cheung, T.C. Kwok. Theoretical and experimental analysis of the effect of error motions on surface generation in fast tool servo machining, J. Precision Engineering. 38 (2014) 428-438.

DOI: 10.1016/j.precisioneng.2013.12.010

Google Scholar

[3] GONG Yan , ZHAO Lei. Single point diamond machines and their applications to optical engineering, J. Chinese Optics. 4 (2011) 537-539.

Google Scholar

[4] WAN Fei. Research of the key technology of FTS machining, D. National University of Defense Technology. (2010).

Google Scholar

[5] L.B. Kong、{TTP}12289 C.F. Cheung. Modeling and characterization of surface generation in fast tool servo machining of microlens arrays, J. Computer & Industrial Engineering, 63 (2012) 957-970.

DOI: 10.1016/j.cie.2012.06.007

Google Scholar

[6] ZHU Deng-chao. Process research and precision analysis of optical microstructure by FTS machining, D. National University of Defense Technology (2010).

Google Scholar

[7] KANG Zhan, NIE Feng-ming, LIU Jin-song, Research on single point diamond precision numerical control turning technique and its development, J. Optical Technique. 36(2010) 163-167.

Google Scholar

[8] YANG Hai-kuan. Research of the key technology of FTS machining driven by piezoceramics, D. National University of Defense Technology (2009).

Google Scholar