том 29 издание 9 страницы 1788-1799

Additive manufacturing of Inconel-625: from powder production to bulk samples printing

Тип публикацииJournal Article
Дата публикации2023-06-09
SCImago Q1
WOS Q1
БС1
SJR0.657
CiteScore7.4
Impact factor3.6
ISSN13552546, 17587670
Mechanical Engineering
Industrial and Manufacturing Engineering
Краткое описание
Purpose

For metal additive manufacturing, metallic powders are usually produced by vacuum induction gas atomization (VIGA) through the breakup of liquid metal into tiny droplets by gas jets. VIGA is considered a cost-effective technique to prepare feedstock. In VIGA, the quality and the morphology of the produced particles are mainly controlled by the gas pressure used during powder production, keeping the setup configuration constant.

Design/methodology/approach

In VIGA process for metallic additive manufacturing feedstock preparation, the quality and morphology of the powder particles are mainly controlled by the gas pressure used during powder production.

Findings

In this study, Inconel-625 feedstock was produced using a supersonic nozzle in a close-coupled gas atomization apparatus. Powder size distribution (PSD) was studied by varying the gas pressure.

Originality/value

The nonmonotonic but deterministic relationships were observed between gas pressure and PSD. It was found that the maximum 15–45 µm percentage PSD, equivalent to 84%, was achieved at 29 bar Argon gas pressure, which is suitable for the LPBF process. Following on, the produced powder particles were used to print tensile test specimens via LPBF along XY- and ZX-orientations by using laser power = 475 W, laser scanning speed = 800 mm/s, powder layer thickness = 50 µm and hatch distance = 100 µm. The yield and tensile strengths were 9.45% and 13% higher than the ZX direction, while the samples printed in ZX direction resulted in 26.79% more elongation compared to XY-orientation.

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ГОСТ |
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Ur Rehman A. et al. Additive manufacturing of Inconel-625: from powder production to bulk samples printing // Rapid Prototyping Journal. 2023. Vol. 29. No. 9. pp. 1788-1799.
ГОСТ со всеми авторами (до 50) Скопировать
Ur Rehman A., Karakas B., Mahmood M. A., Başaran B., Ur Rehman R., Kirac M., Khraisheh M., Salamci M. U., Ünal R. Additive manufacturing of Inconel-625: from powder production to bulk samples printing // Rapid Prototyping Journal. 2023. Vol. 29. No. 9. pp. 1788-1799.
RIS |
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TY - JOUR
DO - 10.1108/rpj-11-2022-0373
UR - https://doi.org/10.1108/rpj-11-2022-0373
TI - Additive manufacturing of Inconel-625: from powder production to bulk samples printing
T2 - Rapid Prototyping Journal
AU - Ur Rehman, Asif
AU - Karakas, Burak
AU - Mahmood, Muhammad Arif
AU - Başaran, Berkan
AU - Ur Rehman, Rashid
AU - Kirac, Mertcan
AU - Khraisheh, Marwan
AU - Salamci, Metin Uymaz
AU - Ünal, Rahmi
PY - 2023
DA - 2023/06/09
PB - Emerald
SP - 1788-1799
IS - 9
VL - 29
SN - 1355-2546
SN - 1758-7670
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{2023_Ur Rehman,
author = {Asif Ur Rehman and Burak Karakas and Muhammad Arif Mahmood and Berkan Başaran and Rashid Ur Rehman and Mertcan Kirac and Marwan Khraisheh and Metin Uymaz Salamci and Rahmi Ünal},
title = {Additive manufacturing of Inconel-625: from powder production to bulk samples printing},
journal = {Rapid Prototyping Journal},
year = {2023},
volume = {29},
publisher = {Emerald},
month = {jun},
url = {https://doi.org/10.1108/rpj-11-2022-0373},
number = {9},
pages = {1788--1799},
doi = {10.1108/rpj-11-2022-0373}
}
MLA
Цитировать
Ur Rehman, Asif, et al. “Additive manufacturing of Inconel-625: from powder production to bulk samples printing.” Rapid Prototyping Journal, vol. 29, no. 9, Jun. 2023, pp. 1788-1799. https://doi.org/10.1108/rpj-11-2022-0373.
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