Journal of Manufacturing Science and Engineering · 2014 · 121 citations · 40 references
Materials ScienceGlass-ceramicAdvanced Laser ProcessingEngineeringPowder MetallurgyGlass PowderMechanical EngineeringDirected Energy DepositionGlass MaterialFunctional GlassLaser Processing TechnologyLaser-assisted DepositionNoncrystalline CeramicsSlm ProcessGlass Engineering3D PrintingMicrostructure
Selective laser melting (SLM) is an additive manufacturing technique for metals, plastics, ceramics, and glass, and glass AM is relevant for gradient‑index optics, embedded optics, and hermetic seals. This study investigates using SLM to deposit glass structures. The authors employed a CO₂ laser to locally melt a glass powder bed, examined how process parameters affect particle formation and line quality, used numerical modeling to gain physical insight, and compared the powder‑bed approach to a wire‑fed method. Experimental and numerical results show that glass powder absorptivity remains nearly constant across processing parameters, allowing the deposition of layered single‑track wide walls that demonstrate SLM’s potential for building transparent parts.
Selective laser melting (SLM) is a technique for the additive manufacturing (AM) of metals, plastics, and even ceramics. This paper explores using SLM for depositing glass structures. A CO2 laser is used to locally melt portions of a powder bed to study the effects of process parameters on stationary particle formation as well as continuous line quality. Numerical modeling is also applied to gain insight into the physical process. The experimental and numerical results indicate that the absorptivity of the glass powder is nearly constant with respect to the processing parameters. These results are used to deposit layered single-track wide walls to demonstrate the potential of using the SLM process for building transparent parts. Finally, the powder bed process is compared to a wire-fed approach. AM of glass is relevant for gradient index optics, systems with embedded optics, and the formation of hermetic seals.
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