Multi-Body Dynamics Analysis of Anti-Backlash Gear System Based on ADAMS/ Flex

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Abstract:

Anti-backlash gear can improve the static transmission precision of system. Besides, the dynamic characteristics of anti-backlash gear system have a significant effect on the performance of overall mechanism, and the torsion spring preload of anti-backlash gear is an important factor to affect the dynamic characteristic. In order to study dynamic characteristics of the anti-backlash gear, a rigid-flexible coupling model of single-stage anti-backlash system was established based on ADAMS / Flex, and the simulation accuracy was compared with the pure rigid model. The effect of the torsion spring preload on frequency response of the anti-backlash system was studied by virtual sweep experiments.

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Periodical:

Advanced Materials Research (Volumes 971-973)

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1261-1265

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June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Charles W: Cairnes et al. ANTIBACKLASH GEARING. US Patent: No. 2663198. ID: 22 Dec (1953).

Google Scholar

[2] Kwon YS. Rate loop control based on torque compensation in anti-backlash geared servo system. /The proceeding of the 2004 America control conference, Boston, Massachusetts, June 30-July 2, 2004, pp.3327-3332.

DOI: 10.23919/acc.2004.1384422

Google Scholar

[3] Allan PM., Levy NM. The determination of minimum pre-load torque for anti-backlash gears in a positional servomechanism. IEEE Transactions on Industrial Electronics and Control Instrumentation, Vol. Ieci-27, 1980, pp.1232-1239.

DOI: 10.1109/tieci.1980.351657

Google Scholar

[4] Li Qing. The double gear being applied in construction of radar. Modern Radar. Vol. 22, Issue 5, 2000, pp.83-86.

Google Scholar

[5] Naoki Imasaki, Masayoshi Tomizukat. Adaptive control of robot manipulators with anti-backlash gears[C]. /IEEE International Conference on Robotics and Automation, 1995: 306-311.

DOI: 10.1109/robot.1995.525302

Google Scholar