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Phase-Field Modeling of Nugget Zone for a AZ31-Mg-Alloy Friction Stir Weld

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Autor
Prosgolitis C.G., Lambrakos S.G., Zervaki A.D.
Fecha
2018
Language
en
DOI
10.1007/s11665-018-3471-y
Materia
Crystal microstructure
Dynamic recrystallization
Friction
Grain boundaries
Grain growth
Magnesium alloys
Microstructural evolution
Nucleation
Population statistics
Welds
AZ31 magnesium alloy
FSW simulation
Geometrical characteristics
Grain-boundary mobility
MICRESS
Micro-structure evolutions
Microstructural features
Phase fields
Friction stir welding
Springer New York LLC
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Resumen
This work presents simulation of microstructure evolution in the nugget zone (NZ) of a AZ31-Mg-alloy friction stir weld. The process parameters (tool geometrical characteristics, rotational speed, travel speed, applied load) have been correlated with the resulting microstructural features in the NZ of the weld (grain size and population) with the aid of the MICRESS software, which provides the ability to simulate both nucleation and grain growth during dynamic recrystallization phenomena evolving in the NZ during the weld thermal cycle. The input parameters of the developed model include the tool geometry, the welding conditions as well as the recrystallization energy, the grain boundary mobility and specific material properties. NZ microstructure obtained by simulation shows good agreement with experimental measurements for both grain population and size. © 2018, ASM International.
URI
http://hdl.handle.net/11615/78379
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