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  4. Powder, process parameters and heat treatment conditions for LaserBeam Melting of LaFeSi-based alloys
 
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2018
Conference Paper
Title

Powder, process parameters and heat treatment conditions for LaserBeam Melting of LaFeSi-based alloys

Abstract
Shaping magneto caloric alloys to thin-walled heat exchangers is a viable way to enhance the efficiency of magnetic cooling systems. In this study shaping of La(FeSi)13-based alloys is carried out by Laser BeamMelting (LBM), an Additive Manufacturing method which offers a high degree of geometrical flexibility. Hence this process could be used for a broad variation and optimization of the heat exchanger structures as well as for a small scale production for prototype systems. However, the adaption of the LBM process to La(FeSi)13-alloys requires careful choice of the base powder, the laser melting parameters and the conditions of the subsequent heat treatment. In this work, structures with wall thickness below 500 mm are successfully produced from both La(FeSiCo)13 and LaCe(FeMnSi)13, and the effect of the particle size and composition of the powder and the laser melting parameters is investigated. Additionally, the magneto caloric entropy change after the heat treatment is reported.
Author(s)
Wieland, Sandra  
Fraunhofer-Institut für Fertigungstechnik und Angewandte Materialforschung IFAM  
Kagathara, Jwalant
Leibniz- Institut für Werkstofforientierte Technologien- IWT
Gärtner, Eric
Leibniz- Institut für Werkstofforientierte Technologien- IWT
Uhlenwinkel, Volker
Leibniz- Institut für Werkstofforientierte Technologien- IWT
Steinbacher, Matthias
Leibniz- Institut für Werkstofforientierte Technologien- IWT
Mainwork
8th International Conference on Magnetic Refrigeration at Room Temperature, Thermag 2018  
Conference
International Conference on Magnetic Refrigeration at Room Temperature (Thermag) 2018  
International Conference on Caloric Cooling 2018  
Language
English
Fraunhofer-Institut für Fertigungstechnik und Angewandte Materialforschung IFAM  
Keyword(s)
  • refrigeration

  • heat exchanger structure

  • shaping

  • Laser Beam Melting (LBM)

  • magnetocaloric

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