Additive manufactured magnetic flux concentrators for induction heating applications

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

Autoren

  • Thomas Steinberg
  • Egbert Baake
  • Wolfgang Kollenberg
  • Kai M. Schultz
  • André Leonhardt
  • Verena Kräusel
  • Thomas Walther

Organisationseinheiten

Externe Organisationen

  • WZR ceramic solutions GmbH
  • Technische Universität Chemnitz
  • EMA-TEC GmbH
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)S31-S39
FachzeitschriftInternational Journal of Applied Electromagnetics and Mechanics
Jahrgang63
AusgabenummerS1
PublikationsstatusVeröffentlicht - 8 Juli 2020
VeranstaltungInternational Conference Heating by Electromagnetic Sources (HES 2019) - Padua, Italien
Dauer: 22 Mai 201924 Mai 2019

Abstract

This paper deals with the numerical simulation and experimental investigation of magnetic flux concentrators (MFC) in particular with innovative additive manufactured MFC for induction heating applications. The novel type of magnetic flux concentrators presented in this paper is based on ferromagnetic particles embedded in ceramic matrix material guaranteeing high temperature mechanical stability and good magnetic performance. The additive manufacturing provides flexible, customized and complex geometry design of the MFC.

ASJC Scopus Sachgebiete

Zitieren

Additive manufactured magnetic flux concentrators for induction heating applications. / Steinberg, Thomas; Baake, Egbert; Kollenberg, Wolfgang et al.
in: International Journal of Applied Electromagnetics and Mechanics, Jahrgang 63, Nr. S1, 08.07.2020, S. S31-S39.

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

Steinberg T, Baake E, Kollenberg W, Schultz KM, Leonhardt A, Kräusel V et al. Additive manufactured magnetic flux concentrators for induction heating applications. International Journal of Applied Electromagnetics and Mechanics. 2020 Jul 8;63(S1):S31-S39. doi: 10.3233/JAE-209119
Download
@article{8723756b0add4b2092eebea4b981d4a9,
title = "Additive manufactured magnetic flux concentrators for induction heating applications",
abstract = "This paper deals with the numerical simulation and experimental investigation of magnetic flux concentrators (MFC) in particular with innovative additive manufactured MFC for induction heating applications. The novel type of magnetic flux concentrators presented in this paper is based on ferromagnetic particles embedded in ceramic matrix material guaranteeing high temperature mechanical stability and good magnetic performance. The additive manufacturing provides flexible, customized and complex geometry design of the MFC.",
keywords = "generative manufacturing, induction heating, Magnetic flux concentrator",
author = "Thomas Steinberg and Egbert Baake and Wolfgang Kollenberg and Schultz, {Kai M.} and Andr{\'e} Leonhardt and Verena Kr{\"a}usel and Thomas Walther",
year = "2020",
month = jul,
day = "8",
doi = "10.3233/JAE-209119",
language = "English",
volume = "63",
pages = "S31--S39",
journal = "International Journal of Applied Electromagnetics and Mechanics",
issn = "1383-5416",
publisher = "Elsevier BV",
number = "S1",
note = "International Conference Heating by Electromagnetic Sources (HES 2019), HES 2019 ; Conference date: 22-05-2019 Through 24-05-2019",

}

Download

TY - JOUR

T1 - Additive manufactured magnetic flux concentrators for induction heating applications

AU - Steinberg, Thomas

AU - Baake, Egbert

AU - Kollenberg, Wolfgang

AU - Schultz, Kai M.

AU - Leonhardt, André

AU - Kräusel, Verena

AU - Walther, Thomas

PY - 2020/7/8

Y1 - 2020/7/8

N2 - This paper deals with the numerical simulation and experimental investigation of magnetic flux concentrators (MFC) in particular with innovative additive manufactured MFC for induction heating applications. The novel type of magnetic flux concentrators presented in this paper is based on ferromagnetic particles embedded in ceramic matrix material guaranteeing high temperature mechanical stability and good magnetic performance. The additive manufacturing provides flexible, customized and complex geometry design of the MFC.

AB - This paper deals with the numerical simulation and experimental investigation of magnetic flux concentrators (MFC) in particular with innovative additive manufactured MFC for induction heating applications. The novel type of magnetic flux concentrators presented in this paper is based on ferromagnetic particles embedded in ceramic matrix material guaranteeing high temperature mechanical stability and good magnetic performance. The additive manufacturing provides flexible, customized and complex geometry design of the MFC.

KW - generative manufacturing

KW - induction heating

KW - Magnetic flux concentrator

UR - http://www.scopus.com/inward/record.url?scp=85088042471&partnerID=8YFLogxK

U2 - 10.3233/JAE-209119

DO - 10.3233/JAE-209119

M3 - Conference article

AN - SCOPUS:85088042471

VL - 63

SP - S31-S39

JO - International Journal of Applied Electromagnetics and Mechanics

JF - International Journal of Applied Electromagnetics and Mechanics

SN - 1383-5416

IS - S1

T2 - International Conference Heating by Electromagnetic Sources (HES 2019)

Y2 - 22 May 2019 through 24 May 2019

ER -

Von denselben Autoren