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Engineering Solid Mechanics

ISSN 2291-8752 (Online) - ISSN 2291-8744 (Print)
Quarterly Publication
Volume 4 Issue 3 pp. 159-166 , 2016

Campbell diagram analysis of open cracked rotor Pages 159-166 Right click to download the paper Download PDF

Authors: R. Tamrakar, N. D. Mittal

DOI: 10.5267/j.esm.2016.1.001

Keywords: Campbell diagram, Engine order line, Stiffness

Abstract: This paper outlines the vibrational response of a cracked rotor in static and rotating condition through Campbell diagram. An open crack in the rotor changes its stiffness. The effect of which is seen on the natural frequency of the system. The natural frequency of the cracked rotor increases in comparison to un-cracked rotor. Experimental and simulation work is performed in the static condition to study the natural frequency of the rotor. Campbell diagram is generated through Simulation in ANSYS to study the critical speed variation at first (I) and second (II) Engine order (EO) line for cracked and un-cracked rotor.

How to cite this paper
Tamrakar, R & Mittal, N. (2016). Campbell diagram analysis of open cracked rotor.Engineering Solid Mechanics, 4(3), 159-166.

Refrences
Darpe, A. K., Chawla, A., & Gupta, K. (2002). Analysis of the response of a cracked Jeffcott rotor to axial excitation. Journal of Sound and Vibration, 249(3), 429-445.

Darpe, A. K., Gupta, K., & Chawla, A. (2003). Dynamics of a two-crack rotor. Journal of Sound and Vibration, 259(3), 649-675.

Dharmaraju, N., Tiwari, R., & Talukdar, S. (2005). Development of a novel hybrid reduction scheme for identification of an open crack model in a beam. Mechanical systems and signal processing, 19(3), 633-657.

Dong, G., & Chen, J. (2011). Vibration analysis and crack identification of a rotor with open cracks. Japan journal of industrial and applied mathematics, 28(1), 171-182.

Dumitru, N., Secar?, E., & Mih?lcic?, M. (2009). Study of rotor-bearing systems using campbell diagram. Proceedings of the 1st International Conference on Manufacturing Engineering, Quality and Production Systems (Volume II).

Ebrahimi, A., Heydari, M., & Behzad, M. (2014). A continuous vibration theory for rotors with an open edge crack. Journal of Sound and Vibration, 333(15), 3522-3535.

Jalali, M. H., Ghayour, M., Ziaei-Rad, S., & Shahriari, B. (2014). Dynamic analysis of a high speed rotor-bearing system. Measurement, 53, 1-9.

Kirillov, O. N. (2009, June). Campbell diagrams of weakly anisotropic flexible rotors. In Proceedings of the Royal Society of London A: Mathematical, Physical and Engineering Sciences (p. rspa20090055). The Royal Society.

Nelson, H. D., & McVaugh, J. M. (1976). The dynamics of rotor-bearing systems using finite elements. Journal of Manufacturing Science and Engineering, 98(2), 593-600.

Papadopoulos, C. A., & Dimarogonas, A. D. (1987). Coupled longitudinal and bending vibrations of a rotating shaft with an open crack. Journal of sound and vibration, 117(1), 81-93.

Sekhar, A. S. (1999). Vibration characteristics of a cracked rotor with two open cracks. Journal of Sound and Vibration, 223(4), 497-512.

Silani, M., Ziaei-Rad, S., & Talebi, H. (2013). Vibration analysis of rotating systems with open and breathing cracks. Applied Mathematical Modelling, 37(24), 9907-9921.

Tsai, T. C., & Wang, Y. Z. (1996). Vibration analysis and diagnosis of a cracked shaft. Journal of Sound and Vibration, 192(3), 607-620.

Wagner, N., & Helfrich, R. (2013). Dynamics of rotors in complex structures. NAFEMS World Congress June 9-12, 2013, Salzburg, Austria.

Zhou, T., Sun, Z., Xu, J., & Han, W. (2005). Experimental analysis of cracked rotor. Journal of dynamic systems, measurement, and control, 127(3), 313-320.
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Journal: Engineering Solid Mechanics | Year: 2016 | Volume: 4 | Issue: 3 | Views: 2982 | Reviews: 0

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