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Microstructural modification of cast Mg alloys by friction stir processing
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Citations
15
References
2008
Year
Materials ScienceHigh StrengthEngineeringMechanical EngineeringAbstractabstractcast Mg AlloysAlloy DesignMagnesium-based CompositeSolid MechanicsMetal FormingMicrostructural ModificationSolidificationCeramic PowdersMg AlloyMechanics Of MaterialsMicrostructureMetal Processing
AbstractAbstractCast Mg alloys were processed using friction stir processing (FSP) to acquire a fine grained structure and high strength. Actually, FSP is a novel grain refinement method for light metal alloys. Using FSP, a cast microstructure with coarse grain size was refined to equiaxial fine grain through dynamic recrystallisation; second phase particles were finely dispersed by FSP. Moreover, FSP is effective to eliminate cast defects such as microshrinkages or porosities. Commercial die cast Mg alloy (AZ91D) and high strength Mg–Y–Zn alloy plates were prepared for FSP. Heat input using a rotational tool during FSP closely affected the microstructure in the stirred zone. Actually, FSP with lower heat input produced a finer grain size and higher hardness. Changes in the friction stir processed microstructures affecting mechanical properties were not only grain refinement, but also second phase particle distributions. Results show that alloys with high hardness by FSP have finely dispersed second phase particles without dissolution during FSP.Keywords: MG ALLOYFRICTION STIR WELDINGFRICTION STIR PROCESSINGGRAIN REFINEMENTDYNAMIC RECRYSTALLISATION
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