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Characterization of mechanical properties and microstructures of spark plasma sintered and cryo-rolled AA2024−Y composites

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Abstract The relationship between the microstructure and mechanical properties of the spark plasma sintered AA2024−Y composites subjected to cryo-rolling was investigated. Yttrium addition enhances the mechanical properties of the composites… Click to show full abstract

Abstract The relationship between the microstructure and mechanical properties of the spark plasma sintered AA2024−Y composites subjected to cryo-rolling was investigated. Yttrium addition enhances the mechanical properties of the composites by promoting grain refinement and precipitation. However, there is a clear trend of initial increase and later decrease in the properties. Also, it is observed that 0.3 wt.% of yttrium is the optimum amount of reinforcement content to obtain the highest mechanical properties. To further improve the tensile strength of the composites, cryo-rolling was performed on the composites under standard cryogenic conditions by several passes up to a reduction of 25%. The mechanical properties and the corresponding microstructures of composites after cryo-rolling were correlated. The SEM and TEM microstructures reveal that the samples exhibit dual size grains, i.e., nanograins are formed as sub-grains within the actual grain. Due to the grain size reduction and the increase in the dislocation density, the tensile properties are remarkably improved compared to those of the composites before cryo-rolling. The highest mechanical properties like hardness, YS and UTS are found to be 153 HV, 539 MPa and 572 MPa, respectively, with a reasonable ductility in the composite with 0.3 wt.% Y.

Keywords: plasma sintered; cryo rolling; spark plasma; aa2024 composites; mechanical properties

Journal Title: Transactions of Nonferrous Metals Society of China
Year Published: 2020

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