The Research on Modeling and Dynamic Simulation of Gear Box Virtual Prototype Based on Pro/E and ADAMS

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In this paper, the combination of Pro\/E and ADAMS to build a virtual prototype model of gear transmission, the dynamic simulation of the gear meshing process, study on dynamic speed, mesh force bearing load, where, for the gear box of the engineering analysis and optimization design. A 3D modeling and designing software, established a parametric model of a gear box of the rack and pinion drive mechanism, which is used in large gantry milling machine XK2425-600. The data interface module MECHANISM/Pro is used to convert the Pro/E model data to ADAMS, and then the virtual prototype is built in it. The rotational speeds, meshing forces, and reactive loads at bearings are obtained by dynamic simulation of the virtual prototype, which can be used in finite element analysis as boundary condition, helped to calculate the strength and stiffness of the box.

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115-120

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April 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Tian Hui-fang, forest Xizhen. Based on Pro/E and ADAMS gear meshing dynamic simulation [J]. mechanical drive, volume thirtieth, sixth period. (2006).

Google Scholar

[2] The newweeks, Xiao dry. Based on Pro/E and ANSYS helical gear engineering analysis of [J]. coal mine machinery, volume twenty-seventh, Twelfth period. 2006. 12.

Google Scholar

[3] Li Jun, punishment Junwen, Tan Wenjie . ADAMS tutorial [M]. Beijing: Beijing Institute of Technology press, (2002).

Google Scholar

[4] Chen Liping, Zhang Yunqing. Dynamic analysis of mechanical system and application of ADAMS tutorial [M]. Beijing: Tsinghua University press, (2005).

Google Scholar

[5] Wei Shuhua. Based on the virtual prototype technology for cylindrical gear reducer design research [D]. Shandong: Shandong University of Science and Technology, (2006).

Google Scholar

[6] Kai, Cheng Ying. The meshing force parameters by the simulation of computer simulation for [J]., 2002, 19 ( 6): 87 88, 91.

Google Scholar

[7] Hua Shungang, Yu Guoquan, cycads. Based on the ADAMS reducer virtual prototyping modeling and dynamic simulation of [J]. machine design and research, volume twenty-second, sixth period. 2006. 12.

Google Scholar

[8] Ling P. W, The Needed Optimal Cycle for Prediction Accuracy of Single Stock Price Behavior in Taiwan by Fractals Theory, IEIT Journal of Adaptive & Dynamic Computing, 2011(3), Jul 2011, pp: 1-4. DOI=10. 5813/www. ieit-web. org/IJADC/2011. 3. 1.

DOI: 10.5813/www.ieit-web.org/ijadc/2011.3.1

Google Scholar

[9] Hu Y., Xiong P., Yang X, Synthesis and Characterization of Surface-Modified Tourmaline with Aluminic Ester, IEIT Journal of Adaptive & Dynamic Computing, 2011(3), Jul 2011, pp: 5-9. DOI=10. 5813/www. ieit-web. org/IJADC/2011. 3. 2.

DOI: 10.5813/www.ieit-web.org/ijadc/2011.3.2

Google Scholar