Microstructure Development of 308L Stainless Steel During Additive Manufacturing
Autor: | Donald W. Brown, Peter Kenesei, Jason C. Cooley, Jun-Sang Park, John S. Carpenter, Jinesh Dahal, Bjørn Clausen, Adrian S. Losko |
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Rok vydání: | 2019 |
Předmět: |
010302 applied physics
Diffraction Austenite Materials science Structural material Metallurgy 0211 other engineering and technologies Metals and Alloys 02 engineering and technology Condensed Matter Physics Microstructure 01 natural sciences law.invention Stress (mechanics) Mechanics of Materials law Ferrite (iron) Lattice (order) 0103 physical sciences Hydrostatic equilibrium 021102 mining & metallurgy |
Zdroj: | Metallurgical and Materials Transactions A. 50:2538-2553 |
ISSN: | 1543-1940 1073-5623 |
DOI: | 10.1007/s11661-019-05169-1 |
Popis: | In situ high-energy X-ray diffraction measurements were completed during deposition of 308L stainless steel wire onto a 304L stainless steel substrate. Attempts were made to extract microstructural features such as phase fraction and internal stress, as well as temperature evolution immediately following the deposition. The limited data that could be collected during deposition and rapid solidification are critically examined. High-energy X-rays coupled with relatively slow detectors were utilized to enable determination of orientation-dependent lattice parameters accurately enough to comment on phase strain evolution between austenite and ferrite. Information about the hydrostatic and deviatoric stress states of the constituent phases was determined on time scales that are relevant to their development. However, the time resolution of the technique was insufficient to monitor phase evolution during the solid–solid phase transformation and, more so, during solidification. Moreover, the accurate and absolute determination of inherently statistical parameters, such as phase fraction, depends critically on the ability to sample a statistically significant numbers of grains in the microstructure. |
Databáze: | OpenAIRE |
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