Experimental and Numerical Analysis of Thermal and Thermomechanical Behavior of a Power Inductor Accompanied by a Reliability Study
In practice, when feeding the electrical and electronic components, they generate heat by Joule's effect, which will cause an increase in temperature and provoking mechanical deformations related to the expansion of the materials. It is therefore this aspect that is the subject of our study on...
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Published in | IOP conference series. Materials Science and Engineering Vol. 205; no. 1; pp. 12014 - 12019 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Bristol
IOP Publishing
01.06.2017
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Abstract | In practice, when feeding the electrical and electronic components, they generate heat by Joule's effect, which will cause an increase in temperature and provoking mechanical deformations related to the expansion of the materials. It is therefore this aspect that is the subject of our study on the thermal and thermomechanical characterization of a ferrite power inductor by experimental and numerical channels. For this purpose, a finite element model was developed and calibrated by comparing its results to the experimental results obtained via thermal measurements and measurements by speckle interferometry system. A reliability analysis on the power inductor was performed numerically, based on the coupling between finite element model validated and the methods of Monte Carlo, FORM and SORM. |
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AbstractList | In practice, when feeding the electrical and electronic components, they generate heat by Joule's effect, which will cause an increase in temperature and provoking mechanical deformations related to the expansion of the materials. It is therefore this aspect that is the subject of our study on the thermal and thermomechanical characterization of a ferrite power inductor by experimental and numerical channels. For this purpose, a finite element model was developed and calibrated by comparing its results to the experimental results obtained via thermal measurements and measurements by speckle interferometry system. A reliability analysis on the power inductor was performed numerically, based on the coupling between finite element model validated and the methods of Monte Carlo, FORM and SORM. |
Author | Bendaou, Om Agouzoul, M Gautrelet, C Elhami, A |
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Cites_doi | 10.1007/BF00565632 10.1117/12.7977161 10.1016/j.optlaseng.2014.08.006 |
ContentType | Journal Article |
Copyright | Published under licence by IOP Publishing Ltd 2017. This work is published under http://creativecommons.org/licenses/by/3.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. |
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References | Borza (MSE_205_1_012014bib3) 2015; 64 Stetson (MSE_205_1_012014bib4) 1987; 26 Lemaire (MSE_205_1_012014bib2) 2005 Luong (MSE_205_1_012014bib8) 2009 Nistea (MSE_205_1_012014bib6) 2010 Goldman (MSE_205_1_012014bib1) 2006 Costantini (MSE_205_1_012014bib7) 1998; 36 Stetson (MSE_205_1_012014bib5) 1986; 8 |
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Snippet | In practice, when feeding the electrical and electronic components, they generate heat by Joule's effect, which will cause an increase in temperature and... In practice, when feeding the electrical and electronic components, they generate heat by Joule’s effect, which will cause an increase in temperature and... |
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SubjectTerms | Component reliability Deformation effects Electronic components Finite element method Mathematical models Monte Carlo simulation Numerical analysis Reliability analysis Speckle interferometry Thermal measurement Thermodynamic properties Thermomechanical properties |
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Title | Experimental and Numerical Analysis of Thermal and Thermomechanical Behavior of a Power Inductor Accompanied by a Reliability Study |
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