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DOE OSTI · 3024672

Controlling homogenization length scales and microstructure in additively manufactured Ti-Ta functionally graded materials

Abstract

Materials with smooth compositional gradients or functionally grade materials (FGMs) produced via additive manufacturing (AM), enables joining dissimilar materials and optimizing multiple properties in advanced engineering applications. However, as-printed AM microstructures exhibit micro-segregation and solidification defects which, when combined with controlling macroscale gradient properties, complicates necessary post-processing. Here, we use CALPHAD-informed diffusion modelling to design post-processing heat treatments for lightweight to refractory FGMs. Ti-Ta (0 to 85 at. % Ta) FGMs were fabricated using laser-based directed energy deposition AM. Post-processing heat treatments at 1000° C and 1500° C were designed to promote homogenization across specific length scales and experimentally validated. Investigation of chemical segregation and microstructures demonstrated that the length scale of homogenization is controlled as a function of time, temperature, and local composition. Ta-rich regions exhibited incomplete homogenization compared to Ti-rich layers. Unmelted Ta particles were found to completely dissolve at 1500 °C. By controlling cooling rate (200 °C/min), martensitic structures were produced between 14–36 at. % Ta, consistent with martensite-start temperatures calculations, while furnace cooling (2 °C/min) produced α+β morphologies. This work establishes a validated predictive framework for designing post-processing to tailor microstructure and chemical architecture in AM FGMs, facilitating their deployment in demanding environments.

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BibTeXRIS

Ellyson, Benjamin [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)], Bocklund, Brandon [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)] (ORCID:0000000232648413), Glerum, Jennifer [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)] (ORCID:0000000202419011), Ury, Nicholas [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)], Juhasz, Michael [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)] (ORCID:0000000203719649), Seede, Raiyan [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)], Perron, Aurelien [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)] (ORCID:000000025280003X), Bertsch, Kaila [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)]. 2026-03-07. Controlling homogenization length scales and microstructure in additively manufactured Ti-Ta functionally graded materials. https://doi.org/10.1016/j.matdes.2026.115802

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