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Electron Beam Welding of IN792 DS: Effects of Pass Speed and PWHT on Microstructure and Hardness

Electron Beam (EB) welding has been used to realize seams on 2 mm-thick plates of directionally solidified (DS) IN792 superalloy. The first part of this work evidenced the importance of pre-heating the workpiece to avoid the formation of long cracks in the seam. The comparison of different pre-heati...

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Autores principales: Angella, Giuliano, Barbieri, Giuseppe, Donnini, Riccardo, Montanari, Roberto, Richetta, Maria, Varone, Alessandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5615688/
https://www.ncbi.nlm.nih.gov/pubmed/28872620
http://dx.doi.org/10.3390/ma10091033
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author Angella, Giuliano
Barbieri, Giuseppe
Donnini, Riccardo
Montanari, Roberto
Richetta, Maria
Varone, Alessandra
author_facet Angella, Giuliano
Barbieri, Giuseppe
Donnini, Riccardo
Montanari, Roberto
Richetta, Maria
Varone, Alessandra
author_sort Angella, Giuliano
collection PubMed
description Electron Beam (EB) welding has been used to realize seams on 2 mm-thick plates of directionally solidified (DS) IN792 superalloy. The first part of this work evidenced the importance of pre-heating the workpiece to avoid the formation of long cracks in the seam. The comparison of different pre-heating temperatures (PHT) and pass speeds (v) allowed the identification of optimal process parameters, namely PHT = 300 °C and v = 2.5 m/min. The microstructural features of the melted zone (MZ); the heat affected zone (HAZ), and base material (BM) were investigated by optical microscopy (OM), scanning electron microscopy (SEM), energy dispersion spectroscopy (EDS), electron back-scattered diffraction (EBSD), X-ray diffraction (XRD), and micro-hardness tests. In the as-welded condition; the structure of directionally oriented grains was completely lost in MZ. The γ’ phase in MZ consisted of small (20–40 nm) round shaped particles and its total amount depended on both PHT and welding pass speed, whereas in HAZ, it was the same BM. Even if the amount of γ’ phase in MZ was lower than that of the as-received material, the nanometric size of the particles induced an increase in hardness. EDS examinations did not show relevant composition changes in the γ’ and γ phases. Post-welding heat treatments (PWHT) at 700 and 750 °C for two hours were performed on the best samples. After PWHTs, the amount of the ordered phase increased, and the effect was more pronounced at 750 °C, while the size of γ’ particles in MZ remained almost the same. The hardness profiles measured across the joints showed an upward shift, but peak-valley height was a little lower, indicating more homogeneous features in the different zones.
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spelling pubmed-56156882017-09-28 Electron Beam Welding of IN792 DS: Effects of Pass Speed and PWHT on Microstructure and Hardness Angella, Giuliano Barbieri, Giuseppe Donnini, Riccardo Montanari, Roberto Richetta, Maria Varone, Alessandra Materials (Basel) Article Electron Beam (EB) welding has been used to realize seams on 2 mm-thick plates of directionally solidified (DS) IN792 superalloy. The first part of this work evidenced the importance of pre-heating the workpiece to avoid the formation of long cracks in the seam. The comparison of different pre-heating temperatures (PHT) and pass speeds (v) allowed the identification of optimal process parameters, namely PHT = 300 °C and v = 2.5 m/min. The microstructural features of the melted zone (MZ); the heat affected zone (HAZ), and base material (BM) were investigated by optical microscopy (OM), scanning electron microscopy (SEM), energy dispersion spectroscopy (EDS), electron back-scattered diffraction (EBSD), X-ray diffraction (XRD), and micro-hardness tests. In the as-welded condition; the structure of directionally oriented grains was completely lost in MZ. The γ’ phase in MZ consisted of small (20–40 nm) round shaped particles and its total amount depended on both PHT and welding pass speed, whereas in HAZ, it was the same BM. Even if the amount of γ’ phase in MZ was lower than that of the as-received material, the nanometric size of the particles induced an increase in hardness. EDS examinations did not show relevant composition changes in the γ’ and γ phases. Post-welding heat treatments (PWHT) at 700 and 750 °C for two hours were performed on the best samples. After PWHTs, the amount of the ordered phase increased, and the effect was more pronounced at 750 °C, while the size of γ’ particles in MZ remained almost the same. The hardness profiles measured across the joints showed an upward shift, but peak-valley height was a little lower, indicating more homogeneous features in the different zones. MDPI 2017-09-05 /pmc/articles/PMC5615688/ /pubmed/28872620 http://dx.doi.org/10.3390/ma10091033 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Angella, Giuliano
Barbieri, Giuseppe
Donnini, Riccardo
Montanari, Roberto
Richetta, Maria
Varone, Alessandra
Electron Beam Welding of IN792 DS: Effects of Pass Speed and PWHT on Microstructure and Hardness
title Electron Beam Welding of IN792 DS: Effects of Pass Speed and PWHT on Microstructure and Hardness
title_full Electron Beam Welding of IN792 DS: Effects of Pass Speed and PWHT on Microstructure and Hardness
title_fullStr Electron Beam Welding of IN792 DS: Effects of Pass Speed and PWHT on Microstructure and Hardness
title_full_unstemmed Electron Beam Welding of IN792 DS: Effects of Pass Speed and PWHT on Microstructure and Hardness
title_short Electron Beam Welding of IN792 DS: Effects of Pass Speed and PWHT on Microstructure and Hardness
title_sort electron beam welding of in792 ds: effects of pass speed and pwht on microstructure and hardness
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5615688/
https://www.ncbi.nlm.nih.gov/pubmed/28872620
http://dx.doi.org/10.3390/ma10091033
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