中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Experiment study on friction drive

文献类型:会议论文

作者Guoping Li; Guomin Wang; Zhengqiu Yao; Lisheng Ma
出版日期2004-09-29
会议日期2004-6-21
会议地点Glasgow, Scotland
关键词large telescope friction drive ultra-low speed slippage creepage critical speed
卷号5495
期号5495
页码Vol.5495 419-428
英文摘要
In the past years, friction drive was developed to overcome the inherent deficiencies in both worm drive and gear drive.No periodical error and free of backlash are the main advantages of friction drive. With the trend towards bigger and bigger aperture of the optical telescopes, there are some reports about friction drive employed to drive the telescopes.However friction drive has its own deficiencies, such as slippage and creepage. This report here describes the study on the friction drive finished in an experiment arranged by LAMOST project. It comprises three main parts. First, it introduces the experiment apparatus and proposes a new kind of measurement and adjustment mechanisms. Secondly,the report gives the analysis of friction drive characteristics theoretically, such as slippage, creepage and gives the results of corresponding experiments. The experiment shows that the lowest stable speed reaches 0.05″/s with precision of 0.009″(RMS), the preload has little influence on the drive precision in the case of constant velocity and the variable velocity when the angle acceleration is less than 5″/s2 with close loop control and the creepage velocity of this experiment system is 1.47″/s. Lastly, the analysis in the second section lists some measures to improve the precision and stability further. These measures have been actually conducted in the testing system and proved to be reliable.
会议主办者The International Society for Optical Engineering
会议录Astronomical Structures and Mechanisms Technology
会议录出版者SPIE
学科主题精密机械及传动 ; 自动控制
源URL[http://ir.niaot.ac.cn/handle/114a32/385]  
专题会议论文
推荐引用方式
GB/T 7714
Guoping Li,Guomin Wang,Zhengqiu Yao,et al. Experiment study on friction drive[C]. 见:. Glasgow, Scotland. 2004-6-21.

入库方式: OAI收割

来源:南京天文光学技术研究所

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