Accession Number : ADA581058


Title :   High Strength, Nano-Structured Mg-Al-Zn Alloy


Descriptive Note : Journal article


Corporate Author : ARMY RESEARCH LAB ABERDEEN PROVING GROUND MD WEAPONS AND MATERIALS RESEARCH DIRECTORATE


Personal Author(s) : Zheng, Baolong ; Ertorer, Osman ; Li, Ying ; Zhou, Yizhang ; Mathaudhu, Suveen N ; Tso, Chi Y ; Lavernia, Enrique J


Full Text : https://apps.dtic.mil/dtic/tr/fulltext/u2/a581058.pdf


Report Date : Jan 2011


Pagination or Media Count : 15


Abstract : The mechanical behavior and microstructure of nanocrystalline (nc) Mg AZ80 alloy, synthesized via a cryomilling and spark plasma sintering (SPS) approach are reported and discussed. The effects of cryomilling processing on chemistry, particle morphology, and microstructure of the Mg alloy powder are described and discussed. The experimental results show that cryomilling for 8 h yields nc Mg agglomerates, approximately 30 micro m in size, with an internal average grain size of approximately 40 nm. The mechanisms that are thought to be responsible for deformation twins that were observed in the cryomilled AZ80 powder are discussed. The cryomilled Mg powder was subsequently consolidated using SPS at 250, 300 and 350 deg C. The consolidated material consisted of a bimodal microstructure with nc fine and coarse grains formed in the SPS ed Mg AZ80 microstructure. Inside of the coarse grains, nano-sized Mg17Al12 precipitates were observed. A maximum microhardness of 140 HV, compressive yield strength of 442.3 MPa, and ultimate strength of 546MPa are measured, which compare favorably to published values for conventional Mg alloys.


Descriptors :   *HIGH STRENGTH , *MAGNESIUM ALLOYS , *NANOSTRUCTURES , *SINTERING , CHEMICAL ANALYSIS , DEFORMATION , GRAIN SIZE , MICROHARDNESS , MICROSTRUCTURE , MORPHOLOGY , PHASE TRANSFORMATIONS , POWDER METALS , TWINNING(CRYSTALLOGRAPHY) , YIELD STRENGTH


Subject Categories : Fabrication Metallurgy
      Mechanics


Distribution Statement : APPROVED FOR PUBLIC RELEASE