Dataset in support of the journal article 'Influence of build orientation on high temperature fatigue crack growth mechanisms in Inconel 718 fabricated by laser powder bed fusion: effects of temperature and hold time'
Dataset in support of the journal article 'Influence of build orientation on high temperature fatigue crack growth mechanisms in Inconel 718 fabricated by laser powder bed fusion: effects of temperature and hold time'
Dataset containing the original values of results and graphs for the article Influence of build orientation on high temperature fatigue crack growth mechanisms in Inconel 718 fabricated by laser powder bed fusion: effects of temperature and hold time published in International Journal of Fatigue
High temperature fatigue, laser powder bed fusion, fatigue crack propagation, additive manufacturing
University of Southampton
Martinez De Luca, Diego
78cbec04-1c7b-4bf8-b621-2fcbd7b5b9f5
Reed, Philippa
8b79d87f-3288-4167-bcfc-c1de4b93ce17
Hamilton, Andrew
9088cf01-8d7f-45f0-af56-b4784227447c
Martinez De Luca, Diego
78cbec04-1c7b-4bf8-b621-2fcbd7b5b9f5
Reed, Philippa
8b79d87f-3288-4167-bcfc-c1de4b93ce17
Hamilton, Andrew
9088cf01-8d7f-45f0-af56-b4784227447c
Martinez De Luca, Diego
(2022)
Dataset in support of the journal article 'Influence of build orientation on high temperature fatigue crack growth mechanisms in Inconel 718 fabricated by laser powder bed fusion: effects of temperature and hold time'.
University of Southampton
doi:10.5258/SOTON/D2499
[Dataset]
Abstract
Dataset containing the original values of results and graphs for the article Influence of build orientation on high temperature fatigue crack growth mechanisms in Inconel 718 fabricated by laser powder bed fusion: effects of temperature and hold time published in International Journal of Fatigue
Spreadsheet
Dataset_for_Influence_of_build_orientation_on_high_temperature_fatigue_crack_growth_mechanisms_in_Inconel_718_fabricated_by_laser_powder_bed_fusion.xlsx
- Dataset
Text
ReadMe_Dataset.txt
- Dataset
More information
Published date: 2022
Keywords:
High temperature fatigue, laser powder bed fusion, fatigue crack propagation, additive manufacturing
Identifiers
Local EPrints ID: 473199
URI: http://eprints.soton.ac.uk/id/eprint/473199
PURE UUID: 474f1dbd-0c1a-4510-801c-9c87123375b6
Catalogue record
Date deposited: 11 Jan 2023 18:12
Last modified: 06 May 2023 01:54
Export record
Altmetrics
Contributors
Creator:
Diego Martinez De Luca
Download statistics
Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.
View more statistics