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Modeling and characterization of binder jet 3D printed NiMnGa components using X-ray microscopy

Published online by Cambridge University Press:  30 July 2021

Stephen Isacco
Affiliation:
Youngstown State Univeristy, Youngstown, Ohio, United States
Bartlomiej Winiarski
Affiliation:
Thermo Fisher Scientific, United States
Christopher Bansah
Affiliation:
Youngstown State University, Youngstown, Ohio, United States
Matthew Caputo
Affiliation:
PennState Shenango, Sharon, Pennsylvania, United States
Constantin V. Solomon
Affiliation:
Youngstown State University, Youngstown, Ohio, United States

Abstract

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Type
Advanced Characterization of Components Fabricated by Additive Manufacturing
Copyright
Copyright © The Author(s), 2021. Published by Cambridge University Press on behalf of the Microscopy Society of America

References

Mostafaei, A., Kimes, K.A., Stevens, E.L., Toman, J., Krimer, Y.L., Ullakko, K., and Chmielus, M., Microstructural evolution and magnetic properties of binder jet additive manufactured Ni-Mn-Ga magnetic shape memory alloy foam, Acta Mater. 131 (2017) 482490.CrossRefGoogle Scholar
Caputo, M.P., Berkowitz, A.E., Armstrong, A., Muller, P., and Solomon, C.V., 4D printing of net shape parts made from Ni-Mn-Ga magnetic shape memory alloys, Additive Manufacturing 21 (2018) 579588.CrossRefGoogle Scholar
Caputo, M., Solomon, C.V., Nguyen, P., and Berkowitz, A.E., Electron microscopy investigation of binder saturation and microstructural defects in functional parts made by additive manufacturing, Microsc. Microanal. 22 (2016) 17701771.Google Scholar
Chmielus, M., Zhang, X.X., Witherspoon, C., Dunand, D.C., Müllner, P., Nat. Mater. 8 (2009) 863866.CrossRefGoogle Scholar
Dunand, D.C. and Müllner, P., Size effect on magnetic actuation in Ni-MN-Ga shape-memory alloys, Adv. Mater. 23 (2011) 216232.CrossRefGoogle ScholarPubMed
Caputo, M.P., Solomon, C.V., A facile method for producing porous parts with complex geometries from ferromagnetic Ni-Mn-Ga shape memory alloys, Mater. Lett. 200 (2017) 8789.CrossRefGoogle Scholar
Caputo, M.P., Waryoba, D.R., and Solomon, C.V., Sintering effects on additive manufactured Ni–Mn–Ga shape memory alloys: a microstructure and thermal analysis, J Mater Sci 55 (2020) 53115321, https://doi.org/10.1007/s10853-020-04352-9.CrossRefGoogle Scholar
Couch, R.N. and Chopra, I., A quasi-static model for NiMnGa magnetic shape memory alloy, Smart Mater. Struct. 16 (2007) S11.CrossRefGoogle Scholar