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Synthesis of a bulk nanostructured metastable Al alloy with extreme supersaturation of Mg.


ABSTRACT: Nanostructuring of bulk metals is now well documented with the development of severe plastic deformation (SPD) for improving the physical and mechanical properties of engineering materials. Processing by high-pressure torsion (HPT), which was developed initially as a grain refinement technique, was extended recently to the mechanical bonding of dissimilar metals during nanostrcturing which generally involves significant microstructural heterogeneity. Here we introduce, for the first time, a bulk metastable Al-Mg supersaturated solid solution by the diffusion bonding of separate Al and Mg metal solids at room temperature using HPT. Exceptional hardness was achieved homogeneously throughout the metastable alloy with a record maximum supersaturated Mg content of ~38.5 at.% in the Al matrix having a grain size of ~35-40 nm. Our results demonstrate the synthesis of a bulk nanocrystalline metastable alloy with good microstructural stability at room temperature where such bulk solids are not yet reported for mechanical alloying by powder metallurgy.

SUBMITTER: Han JK 

PROVIDER: S-EPMC6868221 | biostudies-literature | 2019 Nov

REPOSITORIES: biostudies-literature

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Synthesis of a bulk nanostructured metastable Al alloy with extreme supersaturation of Mg.

Han Jae-Kyung JK   Liss Klaus-Dieter KD   Langdon Terence G TG   Kawasaki Megumi M  

Scientific reports 20191120 1


Nanostructuring of bulk metals is now well documented with the development of severe plastic deformation (SPD) for improving the physical and mechanical properties of engineering materials. Processing by high-pressure torsion (HPT), which was developed initially as a grain refinement technique, was extended recently to the mechanical bonding of dissimilar metals during nanostrcturing which generally involves significant microstructural heterogeneity. Here we introduce, for the first time, a bulk  ...[more]

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