Additively manufactured Ni-20Cr to V functionally graded material: computational predictions and experimental verification of phase formations

Fuente: arXiv
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Main Authors: Tonyali, Beril, Sun, Hui, Bocklund, Brandon, Borgonia, John Paul, Otis, Richard A., Shang, Shun-Li, Liu, Zi-Kui, Beese, Allison M.
Format: Preprint
Published: 2024
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_version_ 1866916105763684352
author Tonyali, Beril
Sun, Hui
Bocklund, Brandon
Borgonia, John Paul
Otis, Richard A.
Shang, Shun-Li
Liu, Zi-Kui
Beese, Allison M.
author_facet Tonyali, Beril
Sun, Hui
Bocklund, Brandon
Borgonia, John Paul
Otis, Richard A.
Shang, Shun-Li
Liu, Zi-Kui
Beese, Allison M.
contents A database for the Cr-Ni-V system was constructed by modeling the binary Cr-V and ternary Cr-Ni-V systems using the CALPHAD approach aided by density functional theory (DFT)-based first-principles calculations and ab initio molecular dynamics (AIMD) simulations. To validate this new database, a functionally graded material (FGM) using Ni-20Cr and elemental V was fabricated using directed energy deposition additive manufacturing (DED AM) and experimentally characterized. The deposited Ni-20Cr was pure fcc phase, while increasing the amount of V across the gradient resulted in the formation of sigma phase, followed by the bcc phase. The experimentally measured phase data was compared with computational predictions made using a Cr-Ni-V thermodynamic database from the literature as well as the database developed in the present work. The newly developed database was shown to better predict the experimentally observed phases due to its accurate modeling of binary systems within the database and the ternary liquid phase, which is critical for accurate Scheil calculations.
format Preprint
id arxiv_https___arxiv_org_abs_2401_14586
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Additively manufactured Ni-20Cr to V functionally graded material: computational predictions and experimental verification of phase formations
Tonyali, Beril
Sun, Hui
Bocklund, Brandon
Borgonia, John Paul
Otis, Richard A.
Shang, Shun-Li
Liu, Zi-Kui
Beese, Allison M.
Materials Science
A database for the Cr-Ni-V system was constructed by modeling the binary Cr-V and ternary Cr-Ni-V systems using the CALPHAD approach aided by density functional theory (DFT)-based first-principles calculations and ab initio molecular dynamics (AIMD) simulations. To validate this new database, a functionally graded material (FGM) using Ni-20Cr and elemental V was fabricated using directed energy deposition additive manufacturing (DED AM) and experimentally characterized. The deposited Ni-20Cr was pure fcc phase, while increasing the amount of V across the gradient resulted in the formation of sigma phase, followed by the bcc phase. The experimentally measured phase data was compared with computational predictions made using a Cr-Ni-V thermodynamic database from the literature as well as the database developed in the present work. The newly developed database was shown to better predict the experimentally observed phases due to its accurate modeling of binary systems within the database and the ternary liquid phase, which is critical for accurate Scheil calculations.
title Additively manufactured Ni-20Cr to V functionally graded material: computational predictions and experimental verification of phase formations
topic Materials Science
url https://arxiv.org/abs/2401.14586