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Influence of process-induced microstructure and imperfections on mechanical properties of AlSi12 processed by selective laser melting
Publikationstyp
Journal Article
Date Issued
2015-07
Sprache
English
Institut
TORE-URI
Volume
221
Start Page
205
End Page
213
Citation
Journal of Materials Processing Technology (221): 205-213 (2015-07)
Publisher DOI
Scopus ID
Selective laser melting (SLM) offers high potential for manufacturing complex geometries and custom-made parts due to its unique layer-wise production process. A series of samples of AlSi12 have been manufactured by SLM process to study the effect of process parameters and post-build heat treatment on the microstructure and the corresponding mechanical properties. Optical microscope, scanning electron microscope, quasistatic tests, continuous load increase fatigue tests and constant amplitude fatigue tests have been employed for characterization. A remarkable eutectic microstructure, with dendritic width changing with SLM process parameters, has been observed. Relationship between SLM process parameters, resulting microstructure and the consequent changes in mechanical properties has been discussed. Base plate heating has been found critical in controlling the in-process microstructure. Mechanical properties of SLM parts outperform those of conventionally manufactured alloy, and can be varied as per requirement, by altering the build rate, keeping the process costs in control. Fatigue scatter can also be controlled by heating the base plate during the process.
Subjects
AlSi12
Fatigue performance
Microstructure
Porosity
Selective laser melting
Tensile properties