Science and Technology of Welding & Joining · 2022 · 34 citations · 36 references
EngineeringMechanical EngineeringGrain Refinement MechanismsGrain SizeWire Arc Additive ManufacturingAluminium 2319CorrosionAl 2319Materials ScienceMaterials EngineeringPowder MetallurgyHeat TransferMetal FormingMicrostructureFusion-based Additive ManufacturingDirected Energy DepositionAlloy DesignAlloy CastingMetal Processing
Controlling the grain size and morphology during fusion-based additive manufacturing remains a challenge for many alloys. This work investigates Titanium diboride (TiB 2 ) nucleant particle addition to the high strength Aluminium 2319 alloy produced during wire arc additive manufacturing (WAAM). Two Cold Metal Transfer (CMT) processing conditions are explored (low heat input CMT and high heat input CMT) and the effectiveness of the grain refiner is studied. The addition of TiB 2 is found to refine the average equiaxed grain size by up to 22% compared to the non-inoculated alloy. The Interdependence Model is applied to understand the grain refinement mechanisms occurring in low heat input AM technologies in alloys containing powerful growth restricting solutes such as Al 2319.
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3D printing of high-strength aluminium alloys
John H. Martin, Brennan D. Yahata, Jacob M. Hundley et al. · Nature · 2017 · 2.7K citations
Wire + Arc Additive Manufacturing
Stewart Williams, Filomeno Martina, Adrian Addison et al. · Materials Science and Technology · 2015 · 1.7K citations · Full text
Materials Science, Industrial Design, Additive Manufacturing Purposes +12
Application of modern aluminum alloys to aircraft
E. A. Starke, James T. Staley · Progress in Aerospace Sciences · 1996 · 1.4K citations