Romain Georges Martin, Christer Johansson, Jason Robert Tavares and Martine Dubé
Article (2022)
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Open Access to the full text of this document Accepted Version Terms of Use: All rights reserved Download (1MB) |
Abstract
Induction welding is a fusion bonding process relying on the application of an alternating magnetic field to generate heat at the joining interface. Herein, magnetic hysteresis losses heating elements, called susceptors, which are made of magnetic particles dispersed in a thermoplastic polymer, are investigated. A methodology to identify the parameters influencing the heating rate of the susceptors and to select suitable magnetic particles for their fabrication is proposed. The applied magnetic field amplitude is modeled based on the induction coil geometry and the alternating electrical current introduced to it. Then, properties of the evaluated susceptor particles are obtained through measurements of their magnetic hysteresis. A case study is presented to validate the suitability of the proposed methodology. Particles of iron (Fe), nickel (Ni), and magnetite (Fe₃O₄) are evaluated as susceptor materials in polypropylene (PP) and polyetheretherketone (PEEK) matrices. Heating rates are predicted using the proposed method, and samples are produced and heated by induction to experimentally verify the results. Good agreement with the predictions is obtained. Ni is the most suitable susceptor material for a PP matrix, while Fe₃O₄ is preferable for PEEK.
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| Department: | Department of Chemical Engineering |
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| Research Center: | CREPEC - Center for Applied Research on Polymers and Composites |
| Funders: | NSERC (Natural Sciences and Engineering Research Council of Canada), Canadian Space Agency (CSA), Ariane Group, Nanoexplore, Mekanic, CREPEC (Centre for Applied Research on Polymers and Composites) |
| Grant number: | ALLRP 556497 - 20 |
| PolyPublie URL: | https://publications.polymtl.ca/49782/ |
| Journal Title: | Advanced Engineering Materials (vol. 24, no. 3) |
| Publisher: | Wiley Blackwell |
| DOI: | 10.1002/adem.202100877 |
| Official URL: | https://doi.org/10.1002/adem.202100877 |
| Date Deposited: | 18 Apr 2023 15:00 |
| Last Modified: | 27 Sep 2024 04:56 |
| Cite in APA 7: | Martin, R. G., Johansson, C., Tavares, J. R., & Dubé, M. (2022). Material selection methodology for an induction welding magnetic susceptor based on hysteresis losses. Advanced Engineering Materials, 24(3), 2100877 (8 pages). https://doi.org/10.1002/adem.202100877 |
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