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  4. Fabrication of FeMnSi-based shape memory alloy components with graded-microstructures by laser powder bed fusion
 
research article

Fabrication of FeMnSi-based shape memory alloy components with graded-microstructures by laser powder bed fusion

Ferretto, I.
•
Sharma, A.
•
Kim, D.
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October 19, 2023
Additive Manufacturing

This work demonstrates the tailoring of the microstructure of two FeMnSi-based shape memory alloys during laser powder bed fusion. Significant variations in the microstructure of the parts can be induced by modifying the scanning speed or the scanning strategy during the process. Specifically, the volume phase fractions, texture, and grain size and morphology change with the applied processing parameters as the thermal history experienced by the material is modified. Additionally, the generally undesired Mn evaporation during laser melting can be deliberately exploited to manipulate the phase composition in the final microstructure. Taking advantage of this, graded-microstructure samples with tailored amounts of the two phases (bcc-6 and fcc-gamma) and distinct microstructure at different locations can be fabricated. A good combination of pronounced shape memory effect and ultrahigh strength can be achieved in this way. The findings of this study offer valuable insights that can drive future research and advancements in additive manufacturing, opening exciting opportunities for the fabrication of multifunctional and high performance materials.

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Type
research article
DOI
10.1016/j.addma.2023.103835
Web of Science ID

WOS:001092188000001

Author(s)
Ferretto, I.
Sharma, A.
Kim, D.
Della Ventura, N. M.  
Maeder, X.
Michler, J.
Hosseini, E.
Lee, W. J.
Leinenbach, C.  
Date Issued

2023-10-19

Published in
Additive Manufacturing
Volume

78

Article Number

103835

Subjects

Technology

•

Shape Memory Alloys

•

Microstructure Control

•

Laser Powder Bed Fusion

•

Shape Memory Effect

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

FunderGrant Number

Swiss National Science Foundation (SNSF)

IZKSZ2_188290/1

National Research Foundation of Korea (NRF)

2019K1A3A1A14065695

Available on Infoscience
February 19, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/204101
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