Influence of relative density on quasi-static and fatigue failure of lattice structures in Ti6Al4V produced by laser powder bed fusion

Abstract Lattice structures produced by additive manufacturing have been increasingly studied in recent years due to their potential to tailor prescribed mechanical properties. Their mechanical performances are influenced by several factors such as unit cell topology, parent material and relative de...

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Main Authors: Markel Alaña, Antonio Cutolo, Sergio Ruiz de Galarreta, Brecht Van Hooreweder
Format: Article
Language:English
Published: Nature Publishing Group 2021-09-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-98631-3
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spelling doaj-3b78bef4bccd403bbca139974eec4ac42021-10-03T11:30:43ZengNature Publishing GroupScientific Reports2045-23222021-09-0111111510.1038/s41598-021-98631-3Influence of relative density on quasi-static and fatigue failure of lattice structures in Ti6Al4V produced by laser powder bed fusionMarkel Alaña0Antonio Cutolo1Sergio Ruiz de Galarreta2Brecht Van Hooreweder3Department of Mechanical Engineering and Materials, Universidad de Navarra, TECNUN Escuela de IngenierosKU Leuven Department of Mechanical EngineeringDepartment of Mechanical Engineering and Materials, Universidad de Navarra, TECNUN Escuela de IngenierosKU Leuven Department of Mechanical EngineeringAbstract Lattice structures produced by additive manufacturing have been increasingly studied in recent years due to their potential to tailor prescribed mechanical properties. Their mechanical performances are influenced by several factors such as unit cell topology, parent material and relative density. In this study, static and dynamic behaviors of Ti6Al4V lattice structures were analyzed focusing on the criteria used to define the failure of lattices. A modified face-centered cubic (FCCm) lattice structure was designed to avoid the manufacturing problems that arise in the production of horizontal struts by laser powder bed fusion. The Gibson–Ashby curves of the FCCm lattice were obtained and it was found that relative density not only affects stiffness and strength of the structures, but also has important implications on the assumption of macroscopic yield criterion. Regarding fatigue properties, a stiffness based criterion was analyzed to improve the assessment of lattice structure failure in load bearing applications, and the influence of relative density on the stiffness evolution was studied. Apart from common normalization of S–N curves, a more accurate fatigue failure surface was developed, which is also compatible with stiffness based failure criteria. Finally, the effect of hot isostatic pressing in FCCm structures was also studied.https://doi.org/10.1038/s41598-021-98631-3
collection DOAJ
language English
format Article
sources DOAJ
author Markel Alaña
Antonio Cutolo
Sergio Ruiz de Galarreta
Brecht Van Hooreweder
spellingShingle Markel Alaña
Antonio Cutolo
Sergio Ruiz de Galarreta
Brecht Van Hooreweder
Influence of relative density on quasi-static and fatigue failure of lattice structures in Ti6Al4V produced by laser powder bed fusion
Scientific Reports
author_facet Markel Alaña
Antonio Cutolo
Sergio Ruiz de Galarreta
Brecht Van Hooreweder
author_sort Markel Alaña
title Influence of relative density on quasi-static and fatigue failure of lattice structures in Ti6Al4V produced by laser powder bed fusion
title_short Influence of relative density on quasi-static and fatigue failure of lattice structures in Ti6Al4V produced by laser powder bed fusion
title_full Influence of relative density on quasi-static and fatigue failure of lattice structures in Ti6Al4V produced by laser powder bed fusion
title_fullStr Influence of relative density on quasi-static and fatigue failure of lattice structures in Ti6Al4V produced by laser powder bed fusion
title_full_unstemmed Influence of relative density on quasi-static and fatigue failure of lattice structures in Ti6Al4V produced by laser powder bed fusion
title_sort influence of relative density on quasi-static and fatigue failure of lattice structures in ti6al4v produced by laser powder bed fusion
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-09-01
description Abstract Lattice structures produced by additive manufacturing have been increasingly studied in recent years due to their potential to tailor prescribed mechanical properties. Their mechanical performances are influenced by several factors such as unit cell topology, parent material and relative density. In this study, static and dynamic behaviors of Ti6Al4V lattice structures were analyzed focusing on the criteria used to define the failure of lattices. A modified face-centered cubic (FCCm) lattice structure was designed to avoid the manufacturing problems that arise in the production of horizontal struts by laser powder bed fusion. The Gibson–Ashby curves of the FCCm lattice were obtained and it was found that relative density not only affects stiffness and strength of the structures, but also has important implications on the assumption of macroscopic yield criterion. Regarding fatigue properties, a stiffness based criterion was analyzed to improve the assessment of lattice structure failure in load bearing applications, and the influence of relative density on the stiffness evolution was studied. Apart from common normalization of S–N curves, a more accurate fatigue failure surface was developed, which is also compatible with stiffness based failure criteria. Finally, the effect of hot isostatic pressing in FCCm structures was also studied.
url https://doi.org/10.1038/s41598-021-98631-3
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