Research on the Virtual Assembly-Disassembly and Electrical Control Process of AC Contactor Based on 3DVIA Composer

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Abstract:

The article made a research on the CJT1-10 AC Contactor, established its three-dimensional model in SolidWorks software, using Bottom-Up and Top-Down design method, and virtually simulated the assembly, disassembly and electrical control process in 3DVIA Composer software. A dedicated virtual simulation platform for AC Contactor was developed, and the simulation process was controlled individually by the program code. The virtual simulation platform effectively reproduced the assembly-disassembly and electrical control process of AC Contactor, which provided a good technical documentation for the production practice and teaching application.

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1140-1144

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June 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Wang Feng, Su Xiuping, Zhagn Kai. Study on Dynamic Simulation of Actuating Mechanism of AC Contactors Using ANSYS/ADAMS [J]. Electro Technical Application, 2006,(7): 27-30.

Google Scholar

[2] Niu Chunping, Chen Degui, Li Xingwen, etc. Simulation of Contact Bounce of AC Contactor and Study of Its Influence Factors [J]. Transactions of China Electro Technical Society, 2007, 22(10): 85-91.

Google Scholar

[3] Xu Zhihong, Zhang Peiming. Research on Dynamic Closing Course of Intelligent AC Contactor [J]. Proceedings of the CSEE, 2007, 27(18): 108-113.

Google Scholar

[4] Huang Bo, Yu Yuncheng. Die Design Procedure Based on Down-Top [J]. Equipment Manufacturing Technology, 2010, (02).

Google Scholar

[5] Li Jian, Wang Zheng, Tian Ye, Gao Shanshan. Top -down Design of Cantalever Road header No.1 Conveyor Based on Pro/E [J]. Coal Mine Machinery, 2011, (07).

Google Scholar

[6] Wang Xu, Zhang Tianran, Shang Xinzhi, etc. 3D Parameter Top-down Design of Hydraulic Support [J]. Coal Mine Machinery, 2010, (08).

Google Scholar