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Influence of SMAT Parameters on Microstructural and Mechanical Properties of Al-Mg-Si Alloy AA 6061
S. Anand Kumar, P. Satish Kumar, , T. S. N. Sankara Narayanan
Published in Springer New York LLC
2017
Volume: 26
   
Issue: 4
Pages: 1947 - 1957
Abstract
In the present work, the influence of surface mechanical attrition treatment (SMAT) parameters on the microstructural and mechanical properties of an aluminum-magnesium-silicon alloy AA 6061 was studied using design of experiment technique. Balls of three different diameters were used, and SMAT was done for three different durations. The microstructural features of the surface layer fabricated by SMAT were characterized by cross-sectional scanning electron microscopic observations, x-ray diffraction technique and transmission electron microscopy. The microindentation hardness, nanoindentation hardness and surface roughness were determined. Due to SMAT, nanocrystallites formed on the surface and near-surface regions, and hardness and surface roughness increased. The ball diameter was the most influencing SMAT parameter compared to the treatment duration. However, interaction between ball diameter and treatment duration could not be ignored. Regression equations were developed relating the process parameters to the surface properties. The ball diameter and treatment duration could thus be properly selected as per the required values of roughness and/or the hardness. © 2017, ASM International.
About the journal
JournalData powered by TypesetJournal of Materials Engineering and Performance
PublisherData powered by TypesetSpringer New York LLC
ISSN10599495
Open AccessNo
Concepts (21)
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    Aluminum alloys
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    Design of experiments
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    Hardness
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    High resolution transmission electron microscopy
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    Magnesium alloys
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    Mechanical properties
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    Microstructural evolution
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    Nanoindentation
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    Scanning electron microscopy
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    Silicon alloys
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    Transmission electron microscopy
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    X ray diffraction
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    ALUMINUM MAGNESIUM SILICON ALLOYS
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    Design of experiment techniques (doe)
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    MICRO-INDENTATION HARDNESS
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    Nanoindentation techniques
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    NANOSTRUCTURED SURFACE
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    SMAT
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    SURFACE MECHANICAL ATTRITION TREATMENTS
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    X-ray diffraction techniques
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    Surface roughness