Volume 7 Number 12 (Dec. 2012)
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JSW 2012 Vol.7(12): 2671-2677 ISSN: 1796-217X
doi: 10.4304//jsw.7.12.2671-2677

Research of ArtemiS in a Ring-Plate Cycloid Reducer

Bing Yang1, 2, Yan Liu2, 3, Guixin Ye4

1School of Mechanical Engineering, Dalian Jiaotong University, Dalian, China
2State Key Laboratory of Mechanical Transmission, Chongqing University, Chongqing, China
3School of Traffic and Transportation Engineering, Dalian Jiaotong University, Dalian, China
4Xiamen Dianzhu Environmental Protection Co, LTD., Xiamen, China


Abstract—The noise and vibration of a ring-plate pincycloid gear reducer driven by two motors are measured respectively at different rotational speeds and different loads. The data are collected and analyzed using the HEAD acoustics multi-channel noise test and analysis system. The ArtemiS is a set of analysis system for improving product quality in all areas of sound and vibration. From the frequency spectrum analysis, we can draw the following conclusions: The vibration acceleration of input shaft of X direction increase with the rotational speed and loads goes up. The vibration acceleration of input shaft of Z direction doesn’t vary much with the rotational and loads vary. The vibration acceleration of output shaft of Z direction doesn’t vary much with the rotational and loads vary. The vibration acceleration of input shaft of X direction increase with the rotational speed and speed goes up. When the rotational speed is certain, the sound pressure level curves have basically the same variation trends. The loudness increases as the speed goes up. The loudness mainly concentrates on low frequency bands. The sharpness decreases as the speed goes up.

Index Terms—ring-plate cycloid gear reducer; ArtemiS; noise

[PDF]

Cite: Bing Yang, Yan Liu, Guixin Ye, "Research of ArtemiS in a Ring-Plate Cycloid Reducer," Journal of Software vol. 7, no. 12, pp. 2671-2677, 2012.

General Information

  • ISSN: 1796-217X (Online)

  • Abbreviated Title: J. Softw.

  • Frequency:  Quarterly

  • APC: 500USD

  • DOI: 10.17706/JSW

  • Editor-in-Chief: Prof. Antanas Verikas

  • Executive Editor: Ms. Cecilia Xie

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