Effect of Friction Stir Processing on Superplasticity of AZ31 Magnesium Alloy
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Abstract
Friction stir processing (FSP), an adaptation of the solid-state joining process friction
newlinestir welding (FSW), is a widely recognized severe plastic deformation (SPD) technique
newlinewhich induces complicated state of stresses and strains in the metallic materials. This
newlineleads to grain refinement and microstructural homogenisation which helps in enhancing
newlinethe formability and other mechanical properties of many non-ferrous alloys. Fine grains
newlinein the microstructure is one of the major pre-requisites to attain superplasticity.
newlineSuperplasticity is the capability of a polycrystalline material to get uniformly elongated
newlinemore than 200% by plastic deformation before its failure. This feature is beneficial in
newlineencapturing several design details in a single complex-structured component. Out of
newlineMg-Al-Zn (AZ) series of wrought Mg alloys, AZ31 is a largely recommended alloy
newlinehaving an advantageous blend of low density and moderate strength. Developing
newlinesuperplasticity in AZ31 Mg alloys has a promising appeal in broadening the limited
newlinespectrum of its applications in the automotive and aerospace sectors. Multi-pass FSP is
newlineanother aspect to develop excellent microstructural homogeneity and consequential
newlinesuperplasticity in Mg alloys.
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