Integrated three-dimensional characterization of reactive phase formation and coarsening during isothermal annealing of metastable Zn–3Mg–4Al eutectic
Microstructural instabilities associated with a metastable lamellar eutectic when exposed to an elevated temperature were analyzed in a Zn-3Mg-4Al alloy as a model system. X-ray diffraction and scanning electron microscopy showed that annealing at a temperature 43 K below the equilibrium eutectic te...
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Published in: | Materials characterization Vol. 170 |
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Abstract | Microstructural instabilities associated with a metastable lamellar eutectic when exposed to an elevated temperature were analyzed in a Zn-3Mg-4Al alloy as a model system. X-ray diffraction and scanning electron microscopy showed that annealing at a temperature 43 K below the equilibrium eutectic temperature converted the metastable ternary MgZn2/η-Zn/β-ZnAl eutectic to a stable mixture of Mg2Zn11/η-Zn/α-Al. 3D EBSD suggested that supersaturation of η-Zn with Mg and Al eased difficulties in nucleation of Mg2Zn11 and α-Al at the MgZn2/η-Zn phase interfaces. Quasi-in-situ X-ray nanotomography revealed that a reactive diffusion process prevailed in an early stage of annealing leading to rapid consumption of MgZn2 for growth of Mg2Zn11 and concomitant thinning and pinch-off of η-Zn lamellae. The reactive diffusion process also brought about significant and quantifiable changes in the topological characteristics of the η-Zn phase at remarkably shorter time scales compared to Rayleigh instability and Ostwald ripening mechanisms. Overall, the present results provide fresh insights on the short-term annealing effects on metastable eutectics, with relevance to structural evolution in additive manufacturing. |
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AbstractList | Microstructural instabilities associated with a metastable lamellar eutectic when exposed to an elevated temperature were analyzed in a Zn-3Mg-4Al alloy as a model system. X-ray diffraction and scanning electron microscopy showed that annealing at a temperature 43 K below the equilibrium eutectic temperature converted the metastable ternary MgZn2/η-Zn/β-ZnAl eutectic to a stable mixture of Mg2Zn11/η-Zn/α-Al. 3D EBSD suggested that supersaturation of η-Zn with Mg and Al eased difficulties in nucleation of Mg2Zn11 and α-Al at the MgZn2/η-Zn phase interfaces. Quasi-in-situ X-ray nanotomography revealed that a reactive diffusion process prevailed in an early stage of annealing leading to rapid consumption of MgZn2 for growth of Mg2Zn11 and concomitant thinning and pinch-off of η-Zn lamellae. The reactive diffusion process also brought about significant and quantifiable changes in the topological characteristics of the η-Zn phase at remarkably shorter time scales compared to Rayleigh instability and Ostwald ripening mechanisms. Overall, the present results provide fresh insights on the short-term annealing effects on metastable eutectics, with relevance to structural evolution in additive manufacturing. |
Author | Moniri, Saman Chao, Paul De Andrade, Vincent Gao, Jianrong Wang, Yeqing Shahani, Ashwin J. Volkenandt, Tobias |
Author_xml | – sequence: 1 fullname: Wang, Yeqing organization: Northeastern Univ., Shenyang (China). Key Laboratory of Electromagnetic Processing of Materials; Univ. of Michigan, Ann Arbor, MI (United States) – sequence: 2 fullname: Chao, Paul organization: Univ. of Michigan, Ann Arbor, MI (United States) – sequence: 3 fullname: Moniri, Saman organization: Univ. of Michigan, Ann Arbor, MI (United States) – sequence: 4 fullname: Gao, Jianrong organization: Northeastern Univ., Shenyang (China). Key Laboratory of Electromagnetic Processing of Materials – sequence: 5 fullname: Volkenandt, Tobias organization: Carl Zeiss Microscopy GmbH, Oberkochen (Germany) – sequence: 6 fullname: De Andrade, Vincent organization: Argonne National Lab. (ANL), Argonne, IL (United States). Advanced Photon Source (APS) – sequence: 7 fullname: Shahani, Ashwin J. organization: Univ. of Michigan, Ann Arbor, MI (United States) |
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Snippet | Microstructural instabilities associated with a metastable lamellar eutectic when exposed to an elevated temperature were analyzed in a Zn-3Mg-4Al alloy as a... |
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SubjectTerms | 3D EBSD Isothermal annealing MATERIALS SCIENCE Reactive diffusion Synchrotron X-ray nanotomography Topology |
Title | Integrated three-dimensional characterization of reactive phase formation and coarsening during isothermal annealing of metastable Zn–3Mg–4Al eutectic |
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