Effect of processing parameters on forming defects during selective laser melting of AlSi10Mg powder
ISSN: 1355-2546
Article publication date: 28 January 2020
Issue publication date: 19 May 2020
Abstract
Purpose
To fabricate a selective laser melting (SLM)-processed AlSi10Mg part with almost full density and free of any apparent pores, this study aims to investigate the effect of ambient argon pressure and laser scanning speed on the particles splash during the AlSi10Mg powder bed laser melting.
Design/methodology/approach
Based on the discrete element method (DEM), a 3D model of random distribution of powder particles was established, and the 3D free surface of SLM forming process was dynamically tracked by the volume of fluid, where a Gaussian laser beam acts as the energy source melting the powder bed. Through the numerical simulation and process experimental research, the effect of the applied laser power and scanning speed on the operating laser melting temperature was studied.
Findings
The process stability has a fundamental role in the porosity formation, which is process-dependent. The effect of the processing conditions on the process stability and the resultant forming defects were clarified.
Research limitations/implications
The results shows that the pores were the main defects present in the SLM-processed AlSi10Mg sample, which decreases the densification level of the sample.
Practical implications
The optimal processing parameters (argon pressure of 1,000 Pa, laser power of 180 W, scan speed of 1,000 mm/s, powder layer thickness of 35 µm and hatch spacing of 50 µm ) applied during laser melting can improve the quality of selective laser melting of AlSi10Mg,
Social implications
It can provide a technological support for 3D printing.
Originality/value
Based on the analysis of the pore and balling formation mechanisms, the optimal processing parameters have been obtained, which were argon pressure of 1,000 Pa, laser power of 180 W, scan speed of 1,000 mm/s, powder layer thickness of 35 µm and hatch spacing of 50 µm. Then, a near-fully dense sample free of any apparent pores on the cross-sectional microstructure was produced by SLM, wherein the relative density of the as-built samples is larger than 97.5%.
Keywords
Acknowledgements
The research is supported by National Natural Science Foundation of China (Grant No. 51575313, No. 51775420).
Citation
Wu, H., Li, J., Wei, Z. and Wei, P. (2020), "Effect of processing parameters on forming defects during selective laser melting of AlSi10Mg powder", Rapid Prototyping Journal, Vol. 26 No. 5, pp. 871-879. https://doi.org/10.1108/RPJ-07-2018-0184
Publisher
:Emerald Publishing Limited
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