Manufacturing Technology 2015, 15(5):881-885 | DOI: 10.21062/ujep/x.2015/a/1213-2489/MT/15/5/881
Induction Heating of Inner Rolling Bearing Ring in ANSYS
- Faculty of Mechanical engineering, University of Zilina. Univerzitna 1, 010 26 Zilina. Slovakia
Aim of this paper is to explain capability of ANSYS to model induction heating of inner rolling bearing ring. This physical problem requires simulation of the interaction of three physical fields. First field is harmonic low-frequency electromagnetic, second transient thermal and third static structural analysis. The skin effect requires the fine mesh in areas near boundary of modeled ring in the vicinity of inductor. MFS concept is used to couple these three physical fields. Main result of this analysis is the thermal field history in inner ring. This analysis is used to obtain sensitivity data for appropriate shape and size of inductor to austenitize required domains of inner ring.
Keywords: Induction heating of inner ring, ANSYS APDL, Thermal field
Published: November 1, 2015 Show citation
References
- PELAGIÆ, Z., NÁGE¥, M., ®MINDÁK, M., RIECKY, D. (2015). Wear Simulation Modeling by Using the Finite Element Method. In: Manufacturing Technology, Vol. 15, No. 2, pp.191-195. J. E. Purkyne University in Usti n. Labem. Czech Republic.
Go to original source...
- BREZNIÈAN, M., FABIAN, P., ME©KO, J., DRBÚL, M. (2013). The Simulation of Influence of Quenching Temperature on Properties of Bearing Rings. In: Manufacturing Technology, Vol. 13, No. 1, pp.20-25. J. E. Purkyne University in Usti n. Labem. Czech Republic.
Go to original source...
- BULIN, R., HAJ®MAN, M. (2014). On the Modelling of Contact Forces in the Framework of Rigid Body Dynamics. In: Manufacturing Technology, Vol. 14, No. 2, pp.136-141. J. E. Purkyne University in Usti n. Labem. Czech Republic.
Go to original source...
- KRYNKE, M., SELEJDAK, J., BORKOWSKI. S. (2012). Diagnosis and damage of bearings. In: Manufacturing Technology, Vol. 12, No. 13, pp.140-144. J. E. Purkyne University in Usti n. Labem. Czech Republic.
Go to original source...
- (2011): Release 14.5 documentation for ANSYS, SAS IP, Inc
- GUR, C. H. - PAN, J. (2009). Handbook of Thermal Process Modeling of Steels, Taylor & Francis Group, LLC.
- HONG, C. P. (2004). Computer Modelling of Heat and Fluid Flow in Materials Processing, Institute of Physics Publishing, London