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G. M. Reddy

Publications and source records attributed to G. M. Reddy.

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Development of Aluminium Based Surface Nano Composites Using Friction Stir Processing

Friction Stir Processing is a relatively new technique which has been developed for microstructural modification of metallic materials through intense, localized plastic deformation. The current research work deals with the development of defect free Aluminium based surface nano composites, with different volume fractions of second phase particles. The work is comprised of development and deformation behavior of aluminium based surface nano composites. Nano-structured second phases of Tungsten and Aluminium oxide were introduced into the Aluminium matrix using a novel unique technique, friction stir processing. Microstructural characterization was done using Scanning Electron Microscopy and Xray Diffraction. Mechanical behavior was evaluated using Vicker's micro hardness. Ultimately structure property correlations were established.

physics.app-ph

Effect of Post Weld Heat Treatments on the Elevated Temperature Mechanical Properties of Ti6Al4V Friction Welds

The α+\b{eta} titanium alloy (Ti6Al4V) has been successfully joined using rotary friction welding. To investigate the influence of post weld heat treatments on the microstructure and mechanical properties of the welds, the weld joints were heat treated in α+\b{eta} and \b{eta} regions, followed by air cooling and furnace cooling. Subsequent to heat treatment, the specimens were subjected to stress relieving treatment. The heat treatment temperatures were selected keeping in view the beta transus temperature of the alloy. Mechanical properties of the welds are evaluated in the as-welded and post weld heat treated conditions at the working temperature of this alloy. The results reported are an average of the values obtained from three tests carried out at a given set of condition. Joints produced exhibited better mechanical properties when compared to the parent metal. Coarse transgranular microstructure and coarse grains in general exhibit better creep and stress rupture properties, while finer microstructures exhibit better tensile strengths

physics.app-ph