Challenges of Numerical Simulation Models for Induction Surface Hardening of Large Bearing Rings
Author:
Affiliation:
1. Universität Rostock, Lehrstuhl für Werkstofftechnik , 18051 Rostock , Germany
2. Deutsche Großwälzlager GmbH , Marieneher Straße 17, 18069 Rostock Germany
Abstract
Publisher
Walter de Gruyter GmbH
Subject
Materials Chemistry,Metals and Alloys,Industrial and Manufacturing Engineering
Link
https://www.degruyter.com/document/doi/10.1515/htm-2022-1013/pdf
Reference22 articles.
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2. Fisk, M.; Lindgren, L.-E.; Datchary, W.; Deshmukh, V.: Modelling of induction hardening in low alloy steels. Finite Elements in Analysis and Design 144 (2018), pp. 61–75, DOI: 10.1016/j.finel.2018.03.002
3. Fuhrmann, J.; Hömberg, D.: Numerical simulation of the surface hardening of steel. Int. J. Numer. Meth. Heat & Fluid Flow 9 (1999) 6, pp. 705–724, DOI: 10.1108/09615539910286042
4. Hömberg, D.; Petzold, T.; Rocca, E.: Analysis and simulations of multifrequency induction hardening. Nonlinear Analysis: Real World Applic. 22 (2015), pp. 84–97, DOI: 10.1016/j.nonrwa.2014.07.007
5. Cajner, F.; Smoljan, B.; Landek, D.: Computer simulation of induction hardening. J. Mater. Process. Technol. 157–158 (2004), pp. 55–60, DOI: 10.1016/j.jmatprotec. 2004.09.017
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