Publication | Open Access
Uncertainties Induced by Processing Parameter Variation in Selective Laser Melting of Ti6Al4V Revealed by In-Situ X-ray Imaging
14
Citations
39
References
2022
Year
Laser Processing (Laser Material Processing)X-ray SpectroscopyEngineeringX-ray FluorescenceX-ray ImagingLaser OpticsLaser Micro-processingSolidificationSlm ProcessSelective Laser MeltingMaterials SciencePowder MetallurgyProcess UncertaintiesLaser Processing TechnologySolid MechanicsLaser-assisted Deposition3D PrintingMicrostructureAdvanced Laser ProcessingParameter VariationLaser Processing (Business Administration)X-ray DiffractionApplied PhysicsDirected Energy DepositionSlm DynamicsLaser-surface InteractionsIn-situ X-ray Imaging
Selective laser melting (SLM) additive manufacturing (AM) exhibits uncertainties, where variations in build quality are present despite utilizing the same optimized processing parameters. In this work, we identify the sources of uncertainty in SLM process by in-situ characterization of SLM dynamics induced by small variations in processing parameters. We show that variations in the laser beam size, laser power, laser scan speed, and powder layer thickness result in significant variations in the depression zone, melt pool, and spatter behavior. On average, a small deviation of only ~5% from the optimized/reference laser processing parameter resulted in a ~10% or greater change in the depression zone and melt pool geometries. For spatter dynamics, small variation (10 μm, 11%) of the laser beam size could lead to over 40% change in the overall volume of the spatter generated. The responses of the SLM dynamics to small variations of processing parameters revealed in this work are useful for understanding the process uncertainties in the SLM process.
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