Articles with "ti6al4v inconel" as a keyword



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Multiscale study of different types of interface of a buffer material in powder-based directed energy deposition: Example of Ti6Al4V/Ti6Al4V - Mo/Mo - Inconel 718

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Published in 2019 at "Additive Manufacturing"

DOI: 10.1016/j.addma.2019.02.007

Abstract: Abstract When it is difficult to deposit a material A on a material B, it is possible to create a Functionally Graded Material (FGM) using a buffer material between them to avoid the appearance of… read more here.

Keywords: buffer material; powder based; ti6al4v inconel; study ... See more keywords
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Effect of Internal Defects on the Fatigue Behavior of Additive Manufactured Metal Components: A Comparison between Ti6Al4V and Inconel 718

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Published in 2022 at "Materials"

DOI: 10.3390/ma15196882

Abstract: In order to obtain a widespread application of Additive Manufactured (AM) technology in the aircraft industry for fatigue critical parts, a detailed characterization of the Fatigue and Damage Tolerance (F&DT) behavior of structural components is… read more here.

Keywords: additive manufactured; effect; fatigue; ti6al4v inconel ... See more keywords
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Study of Phase Evolution Behavior of Ti6Al4V/Inconel 718 by Pulsed Laser Melting Deposition

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Published in 2023 at "Materials"

DOI: 10.3390/ma16062437

Abstract: In this study, a pulsed laser was used as the heat source for the additive work. The Ti6Al4V/Inconel 718 alloy wire was deposited on the substrate by melting using a pulsed laser. Using the above… read more here.

Keywords: laser; deposition; ti6al4v inconel; inconel 718 ... See more keywords