Recrystallization and Grain Growth Kinetics of In718 Manufactured by Laser Powder Bed Fusion

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Date

2022

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Elsevier

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GOLD

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No

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Abstract

The recrystallization and grain growth behaviour of IN718 alloy additively manufactured by laser powder bed fusion (L-PBF) is presented herein. The effects of three different temperatures (1050, 1150 and 1250 degrees C) and holding times (15, 45 and 90 min) were investigated. The texture evolution of the samples was recorded via electron backscatter diffraction (EBSD). The as-built sample is composed of bowl-shaped melt pools, a chessboard-like grain pattern and has a cube texture {100}<001>. Recrystallized grains were observed in the samples treated at 1150 degrees C for 15 min, as well as the samples treated for longer periods and at higher temperatures. Recrystallization was observed to start from high dislocation density regions, including the overlapping melt pools and the borders of the chessboard-like pattern. The initial cube texture transforms into a first-generation cube-twin texture {122}<212> via a twinning-assisted recrystallization mechanism. Then, those recrystallization nuclei sweep through the high defect density matrix; during which almost no new twins are formed. The samples treated at 1250 degrees C are almost completely recrystallized, which forms a weaker cube texture and a stronger P-orientation {011}<112>. However, the growth of recrystallized grains is very limited due to the presence of non-coherent precipitates. (C) 2022 The Author(s). Published by Elsevier B.V.

Description

Brabazon, Dermot/0000-0003-3214-6381; Yalcin, Mustafa Alp/0000-0001-5371-4574; DOGU, Merve Nur/0000-0003-1843-6040

Keywords

IN718, Laser powder bed fusion, Solution heat treatment, Microstructure, Texture, Recrystallization, Electron backscatter diffraction, Solution heat treatment, Mining engineering. Metallurgy, Laser powder bed fusion, IN718, TN1-997, Recrystallization, Texture, Microstructure

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Fields of Science

0203 mechanical engineering, 0103 physical sciences, 02 engineering and technology, 01 natural sciences

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Q1

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OpenCitations Citation Count
42

Source

Journal of Materials Research and Technology

Volume

19

Issue

Start Page

4242

End Page

4257

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CrossRef : 48

Scopus : 48

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Mendeley Readers : 49

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