From powder to part: influence of virgin and recovered Inconel 625 powders on the DED-LP processability, microstructure and mechanical properties

📅 2026-09-16
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🤖 AI Summary
研究通过分析Inconel 625粉末的重用对激光粉末直接能量沉积工艺、微观结构及力学性能的影响,揭示了热等静压处理改善延展性但降低拉伸强度,并指出需全面评估粉末重用。
📝 Abstract
The reuse of metal powders in directed energy deposition using laser powder offers promising sustainability benefits for additive manufacturing, yet its impact on part quality remains unknown. This study investigates the influence of powder reuse on the directed energy deposition process of Inconel 625. Virgin powder was first characterized in terms of flowability, morphology, size and chemical composition, then used to manufacture parts under fixed process parameters. These parts were analysed through two configurations (as-built and hot isostatically pressed) to assess microstructural evolution and mechanical performance. Results show that hot isostatic pressing reduces porosity and promotes grain recrystallization, enhancing ductility while decreasing tensile strength. Recovered powders from one manufacturing cycle, were also characterized. Particle size distribution and morphology remained stable, interstitial contents, particularly oxygen, increased, potentially affecting laser-material interaction and melt pool behaviour in future production. These findings highlight the importance of evaluating powder reuse through a full-process approach, from powder to final part. Future work will focus on the tensile and fatigue performance of parts produced with recovered powders.
Problem

Research questions and friction points this paper is trying to address.

powder reuse
directed energy deposition
Inconel 625
mechanical properties
microstructure
Innovation

Methods, ideas, or system contributions that make the work stand out.

powder reuse
directed energy deposition
Inconel 625
hot isostatic pressing
microstructural evolution
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Romain Deloffre
Univ. Bordeaux, ESTIA Institute of Technology, F-64210 Bidart, FR; Arts et Métiers Institute of Technology, CNRS, Bordeaux INP, I2M, UMR 5295, F-33400 Talence, FR
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Lorène Héraud
Arts et Métiers Institute of Technology, CNRS, Bordeaux INP, I2M, UMR 5295, F-33400 Talence, FR
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Julie Lartigau
Univ. Bordeaux, ESTIA Institute of Technology, F-64210 Bidart, FR