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Influence of defects on mechanical properties of Ti-6Al-4V components produced by selective laser melting and electron beam melting
Published in Elsevier Ltd
2015
Volume: 86
   
Pages: 545 - 554
Abstract
This study evaluates the mechanical properties of Ti-6Al-4 V samples produced by selective laser melting (SLM) and electron beam melting (EBM). Different combinations of process parameters with varying energy density levels were utilized to produce samples, which were analyzed for defects and subjected to hardness, tensile, and fatigue tests. In SLM samples, small pores in amounts up to 1 vol.% resulting from an increase in energy density beyond the optimum level were found to have no major detrimental effect on the mechanical properties. However, further increase in the energy density increased the amount of porosity to 5 vol.%, leading to considerable drop in tensile properties. Samples produced using lower-than-optimum energy density exhibited unmelted powder defects, which, even at 1 vol.% level, strongly affected both tensile and fatigue properties. In EBM, insufficient energy input was found to result in large, macroscopic voids, causing serious degradation in all mechanical properties. These findings are helpful in process optimization and standardization of SLM and EBM processes. © 2015 Elsevier Ltd.
About the journal
JournalData powered by TypesetMaterials and Design
PublisherData powered by TypesetElsevier Ltd
ISSN02641275
Open AccessNo
Concepts (19)
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    Aluminum
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    Defects
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    Density (specific gravity)
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    ELECTRON BEAM MELTING
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    Electron beams
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    Fatigue testing
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    Mechanical properties
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    Melting
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    Optimization
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    Titanium alloys
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    Additive manufacturing
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    Energy density
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    OPTIMUM ENERGY
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    POWDER DEFECTS
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    Process parameters
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    Selective laser melting
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    TENSILE AND FATIGUE PROPERTIES
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    TI-6 AL-4 V
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    3d printers