Vibration Characteristic Analysis and Research of High Speed Dynamic Balancing Machine

Article Preview

Abstract:

Dynamic performance of high speed dynamic balancing machine directly affects the accuracy and safety of dynamic balancing machine. ANSYS 12.0 was used to establish the frame structure model in this paper. The four models of dynamic balancing machine were calculated respectively. The calculation results show that additional stiffness can greatly improve the natural frequencies of dynamic balancing machine. In addition, as the base is large, we can ignore the influence on natural frequencies caused by the base.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

180-185

Citation:

Online since:

June 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Shi Qing-xin, YUAN Ji, HuYong-kang. Dynamic stiffness analysis of 250t high-speed balancing machines rocker [J]. Journal of mechanical engineering, 2011, 47 (1) : 75-79.

Google Scholar

[2] Qian Chao-jun, Tian She-ping, Wang Yue-wu. Dynamics analysis based on ANSYS dynamic balancing machines rocker [J]. Engineering and experiment, 2010, 50 (2) : 10-12.

Google Scholar

[3] WANG wei, LIU liang. Automatic dynamic balancing machine design and dynamic analysis [J]. Mechanical and electrical integration, 2008 (3) : 45-54.

Google Scholar

[4] Gao Zhen-yu, WU Er-yong, YANG Shi-xi. The design of the dynamic balancing machine based on the finite element method[J]. Design and research, 2007 (9) : 5-11.

Google Scholar

[5] YE An-neng, YU Ru-sheng. Dynamic balancing principle and dynamic balancing machine [M]. Wuhan: the press institute of central China, (1985).

Google Scholar

[6] LIU Liang. The dynamic characteristic of analysis and design automatic dynamic balancing machine [D]. Shanghai: Shanghai university, (2008).

Google Scholar

[7] ZHANG Jun-hui. Modal analysis of dynamic balancing machine bearing rocker using the finite element method [J]. Thermal turbine, 2006, 35 (2) : 113-115.

Google Scholar

[8] LIU Yan-zhu, CHEN Wen-liang, CHEN Li-qun. Vibration mechanics [M]. Beijing: higher education press, (1998).

Google Scholar