Studies on microstructure mechanical and corrosion behaviour of friction stir processed aa6082 with cr3c2 particles
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Abstract
Friction Stir Processing (FSP) is a prominent method to enhance
newlinethe mechanical characteristics and to reform the microstructure in the selected
newlinezones of the parent material. The FSP follows the theory of friction stir
newlinewelding. The FSP normally proves and avoids the defects like voids and
newlinediminishes the sizes of the grain development in the intermetallic region of
newlinethe lightweight aluminium alloys. Lightweight aluminium alloys are in high
newlinedemand in various manufacturing sectors like, navy, aerospace and other
newlineautomotive related units. Sectors like automotive generally demands parts
newlinewhich are light in weight to attain maximum performance In FSP, lightweight
newlinealuminum alloys are a pleasing material, which exhibits greater design
newlineflexibility and minimized weight. Owing to its attractive benefits such as low
newlinedensity, high wear and corrosion resistance, improved strength-to-weight ratio
newlineAluminum alloy AA6082 has been considered as primary material in this
newlinestudy. In FSP, several reinforcing particles including graphene, titanium
newlinecarbide, silicon carbide and TiO2 were used in conjunction with AA6082
newlinealloy. There is very insufficient work was executed in the chromium carbide
newlineparticulates. Because, the chromium carbide is hardened material which
newlineshows the better maintained maximum temperatures, maximum corrosion
newlineresistances and improved mechanical attributes. The current work produces
newlineholes in the selected parent material and chromium carbide particles have
newlinebeen added as reinforcement in the prepared holes through FSP technique.
newlineIn this research, there are three different FSP processing parameters
newlinelike tool spinning speed, tool traverse speed and axial load was utilized to
newlineperform the FSP with hardened material of chromium carbide particulates
newline