A Study on Vibration Measuring Technique for Vibratory Feeding System

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Abstract:

The development of industrial automation has urged the vibratory feeding system to become an efficient automation equipment. With vibration as the operating mode of the vibratory transmission system, the moving mass has a crucial impact on transmission rate and efficiency of the material. Therefore, it is necessary to carry out real-time vibration measurement of the vibratory feeding system and get feedback to the control system, so that the vibratory feeding system works more efficiently. The paper provides two vibration measuring techniques which separately uses the displacement sensor and the acceleration sensor. Through comparing the two methods, it provides a strong basis for choosing better measuring technique for vibratory feeding system.

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Periodical:

Advanced Materials Research (Volumes 765-767)

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2185-2188

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Online since:

September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] L. Han, W.L. Xu. A study on the research status and prospect of vibrate feeder[J]. Electronic special equipment, 1999, 1: 192-197.

Google Scholar

[2] H. Gao. A study on the key technology of the decoupling type vibrate feeder production design[D]. Southeast University, Nanjing, (2008).

Google Scholar

[3] Y.M. Li. The research on a new type of vibrate feeder and its control system[D]. Tianjin University, Tianjin, (2005).

Google Scholar

[4] Y.L. Chen, M.S. Jiao, Y.M. Li. A research on flexible vibrate feeder product platform[J]. Process and equipment, 2005, 3: 268-173.

Google Scholar

[5] M.F. Zhou. Electromagnetic vibrate feeder debugging process problems and solving measures[J]. Journal of Yangzhou Polytechnic College, Yangzhou, 2001, 1: 275-280.

Google Scholar

[6] L.M. He. Application system anti-jamming technology[M]. Beijing university of aeronautics and astronautics press, Beijing, (2003).

Google Scholar

[7] Z.H. Qin. Electrotechnology[M]. Higher Education Press, Beijing, (2002).

Google Scholar

[8] H.N. Cai, Z.Y. Zhou. A research on dynamic characteristic of the acceleration sensor software compensation method[J]. Chinese Journal of Scientific Instrument, 1998. 3: 331-335.

Google Scholar

[9] J. Tang, T. Guo. Design of signal process circuit of high precision accelerometer[J]. sensor technology, 2005, 7: 421-426.

Google Scholar

[10] J.S. Zhang, J.Q. Fang. The research on hall displacement sensor[J]. Instrument Technique and Sensor, 1997, 3: 104-108.

Google Scholar

[11] G.Y. Tian, N. Zhang. The development of a new type of eddy current displacement sensor[J]. Chinese Journal of Structural Chemistry, 1996, 2: 295-303.

Google Scholar