Research and Application of the Structural Optimization Design Technique for the Large and Efficient Band Sawing Machine

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Abstract:

This paper takes the large band sawing machine GB42500H as the research object, and establishes the dynamics models of its various parts. Respectively, the relative research is done from the theoretical modal analysis and the dynamic performance testing. According to the analysis results, the structure or geometry improvement scheme of the parts is proposed. The paper also studies preliminarily the dynamic characteristics of the large band sawing machine GB42500H. During the analysis, the models of the parts and the whole are established using the finite element method to optimize the structures of the parts and the whole. That has undoubtedly a very important significance for improving the dynamic performance for the new machine tools structure, increasing the processing accuracy, and shortening the development cycle and costs.

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Advanced Materials Research (Volumes 690-693)

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2901-2905

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May 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] ZHU Jie, CHEN Guo-jin, WANG Wan-qiang, "Applying FPGA on Frequency Convert System of SVPWM," Mechanical & Electrical Engineering Magazine, Vol. 22, No. 4, p.22–25, 2005.

Google Scholar

[2] CHEN Guo-jin, YAO Zhai-rong, SUN Hong, "Realization of AC Motor Vector Control Based on DSP," Mechanical & Electrical Engineering Magazine, Vol. 21, No. 6, p.27–30, 2004.

Google Scholar

[3] WANG Tao, CHEN Guo-jin, NI Jing, "Design and application of electric control system on pattern drawing machine," Journal of Mechanical & Electrical Engineering, Vol. 29, No. 4, p.413–416, 2012.

Google Scholar

[4] CHEN Guo-jin, CHEN Hui-peng, CHEN Li-ping, "Research on multidisciplinary modeling and robust control for electric power steering system," Advanced Materials Research, Vol. 179-180, pp.179-185, 2011.

DOI: 10.4028/www.scientific.net/amr.179-180.179

Google Scholar

[5] CHEN Guo-jin, DENG Kai-ping, GONG You-ping, "The Design and Simulation of Walking Hydraulic Transmission System of Loader HT25J," Mechanical Engineer, No. 6, p.46–49, 2012.

Google Scholar