The micro-mechanisms associated with the evolution of deformation texture in nickel and nickel-cobalt alloys, with stacking fault energy (SFE) ranging from high to low, has been investigated. Pure nickel and nickel-20 wt.% cobalt alloy, which are high SFE materials, develop a characteristic copper-type texture, which is attributed to dislocation slip. In the medium SFE nickel-40 wt.% cobalt alloy, the texture is copper-type up to 95% reduction; however, subsequent reduction to 98% causes the texture to shift towards brass-type. Microstructural examination suggests that the occurrence of Cu-type shear bands (SBs) preferentially in the Cu {1 1 2}-oriented grains has led to this texture transition. In nickel-60 wt.% cobalt alloy, which is a lo...
The effect of strain path change during rolling on the evolution of deformation texture has been stu...
Evolution of crystallographic texture during high strain rate deformation in FCC materials with diff...
Textures of copper foils rolled from three initial thickness (0.25, 2.5 and 25 mm) to approximately ...
The micro-mechanisms associated with the evolution of deformation texture in nickel and nickel-cobal...
Deformation mechanisms in nanocrystalline Ni-x wt% Co alloys (x = 0, 20, 40, 60), having stacking fa...
The micromechanical aspects of rolling texture development in Ni-40 wt.% Co alloy during very large ...
The evolution of crystallographic texture in polycrystalline copper and nickel has been studied. The...
The evolution of deformation texture in a Ni-60Co alloy with low stacking fault energy and a grain s...
Plastic deformation of metals and alloys are invariably accompanied by the development of texture. T...
Three materials, pure aluminium, Al-4 wt.% Mg, alpha-brass have been chosen to understand the evolut...
The evolution of crystallographic texture in a nanocrystalline nickel-20 wt% cobalt alloy has been i...
Effect of change in strain path during rolling and its role in the development of crystallographic t...
Effect of stacking fault energy (SFE) on microstructural and crystallographic aspect of high-velocit...
A series of experiments and simulations that vary the texture and microstructure simultaneously are ...
The effect of stacking fault energy on microstructure, micro texture and hardness evolution in Ni-Co...
The effect of strain path change during rolling on the evolution of deformation texture has been stu...
Evolution of crystallographic texture during high strain rate deformation in FCC materials with diff...
Textures of copper foils rolled from three initial thickness (0.25, 2.5 and 25 mm) to approximately ...
The micro-mechanisms associated with the evolution of deformation texture in nickel and nickel-cobal...
Deformation mechanisms in nanocrystalline Ni-x wt% Co alloys (x = 0, 20, 40, 60), having stacking fa...
The micromechanical aspects of rolling texture development in Ni-40 wt.% Co alloy during very large ...
The evolution of crystallographic texture in polycrystalline copper and nickel has been studied. The...
The evolution of deformation texture in a Ni-60Co alloy with low stacking fault energy and a grain s...
Plastic deformation of metals and alloys are invariably accompanied by the development of texture. T...
Three materials, pure aluminium, Al-4 wt.% Mg, alpha-brass have been chosen to understand the evolut...
The evolution of crystallographic texture in a nanocrystalline nickel-20 wt% cobalt alloy has been i...
Effect of change in strain path during rolling and its role in the development of crystallographic t...
Effect of stacking fault energy (SFE) on microstructural and crystallographic aspect of high-velocit...
A series of experiments and simulations that vary the texture and microstructure simultaneously are ...
The effect of stacking fault energy on microstructure, micro texture and hardness evolution in Ni-Co...
The effect of strain path change during rolling on the evolution of deformation texture has been stu...
Evolution of crystallographic texture during high strain rate deformation in FCC materials with diff...
Textures of copper foils rolled from three initial thickness (0.25, 2.5 and 25 mm) to approximately ...