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Investigation on selective laser-melted AlSi10Mg micro-struts: influence of processing parameters on dimensional accuracy, molten pool morphology and microhardness

Oğulcan Eren (Department of Industrial Design Engineering, Gazi University, Ankara, Turkey)
Hüseyin Kürşad Sezer (Department of Industrial Design Engineering, Gazi University, Ankara, Turkey)
Nurullah Yüksel (Department of Industrial Design Engineering, Gazi University, Ankara, Turkey)
Ahmad Reshad Bakhtarı (Department of Mechanical Engineering, Gazi University, Ankara, Turkey)
Olcay Ersel Canyurt (Department of Mechanical Engineering, Gazi University, Ankara, Turkey)

Rapid Prototyping Journal

ISSN: 1355-2546

Article publication date: 30 July 2024

Issue publication date: 27 August 2024

132

Abstract

Purpose

This study aims to address the limited understanding of the complex correlations among strut size, structural orientation and process parameters in selective laser melting (SLM)-fabricated lattice structures. By investigating the effects of crucial process parameters, strut diameter and angle on the microstructure and mechanical performance of AlSi10Mg struts, the research seeks to enhance the surface morphologies, microstructures and mechanical properties of AM lattice structures, enabling their application in various engineering fields, including medical science and space technologies.

Design/methodology/approach

This comprehensive study investigates SLM-fabricated AlSi10Mg strut structures, examining the effects of process parameters, strut diameter and angle on densification behavior and microstructural characteristics. By analyzing microstructure, geometrical properties, melt pool morphology and mechanical properties using optical microscopy, scanning electron microscope, energy dispersive X-ray spectroscopy and microhardness tests, the research addresses existing gaps in knowledge on fine lattice strut elements and their impact on surface morphology and microstructure.

Findings

The study revealed that laser energy, power density and strut inclination angle significantly impact the microstructure, geometrical properties and mechanical performance of SLM-produced AlSi10Mg struts. Findings insight enable the optimization of SLM process parameters to produce lattice structures with enhanced surface morphologies, microstructures and mechanical properties, paving the way for applications in medical science and space technologies.

Originality/value

This study uniquely investigates the effects of processing parameters, strut diameter and inclination angle on SLM-fabricated AlSi10Mg struts, focusing on fine lattice strut elements with diameters as small as 200 µm. Unlike existing literature, it delves into the complex correlations among strut size, structural orientation and process parameters to understand their impact on microstructure, geometrical imperfections and mechanical properties. The study provides novel insights that contribute to the optimization of SLM process parameters, moving beyond the typically recommended guidelines from powder or machine suppliers.

Keywords

Acknowledgements

The research is supported by the Scientific Research Project Unit of Gazi University under Grant No. FGA-2022–7532.

Citation

Eren, O., Sezer, H.K., Yüksel, N., Bakhtarı, A.R. and Canyurt, O.E. (2024), "Investigation on selective laser-melted AlSi10Mg micro-struts: influence of processing parameters on dimensional accuracy, molten pool morphology and microhardness", Rapid Prototyping Journal, Vol. 30 No. 8, pp. 1556-1578. https://doi.org/10.1108/RPJ-05-2023-0164

Publisher

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Emerald Publishing Limited

Copyright © 2024, Emerald Publishing Limited

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