Research and Application of Cutting Efficiency Optimization Based on VERICUT and UG

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Abstract:

Use the process of dashboard on the solid high-tech 3D numerical control platform of NC machining process as an example, Using UG to establish the machine and parts model, the tool path have been optimized by VERICUT .As a result, enhances the processing speed, shortening the processing time, improve the cutting efficiency, reducing processing cost and making the process has been optimized .Finally, Reliability and optimization results are verified through numerical control platform instance.

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612-615

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September 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Pei-Zhi Zhan, Lin-Yang, Yu-Peng Yuan.Comparison of multi axis linkage NC machine tools machining effect with research based on VERICUT. [J]. Machine tool & hydraulics. 2011,39(14):14-17. In Chinese.

Google Scholar

[2] Qi-Li. Application of VERICUT software in the numerical control in virtual manufacturing [J]. Tool technology 2011, 45(1). In Chinese.

Google Scholar

[3] Gang-Xu. Research of multi axis machining simulation based on VERICUT [J]. Manufacturing technology and machine tool. 2011(2). In Chinese.

Google Scholar

[4] Wei-Liu. Numerical control machining optimization based on VERICUT [J]. He bei province, Lang fang. North China Institute of Aerospace Engineering. 2009. 5. In Chinese.

Google Scholar

[5] Zhen-Ping Zheng, Yun-Lin Huang, Sheng-Rong Li. VERICUT 7. 0 Chinese version of NC simulation technology and application examples [M]. Bei Jing:Machinery Industry Press,2011. In Chinese.

Google Scholar

[6] Jin-Xing Zhen, Hui-Qun Cheng. Complex parts NC machining simulation based on UG/CAM and VERICUT. Abrasives Manufacture. 2006. In Chinese.

Google Scholar

[7] Jiang-Bo Gong, The optimization method of nuclear main pump impeller, five axis NC machining tool path [J]. Shanghai Jiao Tong University. 2013. In Chinese.

Google Scholar

[8] Ping-Han Wu, Yu-Wei Li Chih-Hsing Chu.  Optimized tool path generation based on dynamic programming for five-axis flank milling of rule surface [J]. International Journal of Machine Tools and Manufacture . 2008 (11).

DOI: 10.1016/j.ijmachtools.2008.03.009

Google Scholar

[9] Northern research and engineering corporation.Cutter-path generation for 5-axis flank milling of turbo machinery components, (2000).

Google Scholar

[10] Schulz H. High speed turn-milling-a new precision manufacturing technology for the machining of rotationally symmetrical work pieces . Annals of the CIRP , 1990: 107~109.

DOI: 10.1016/s0007-8506(07)61013-0

Google Scholar