Deformation mechanisms in nanocrystalline Ni-x wt% Co alloys (x = 0, 20, 40, 60), having stacking fault energy values from high to low, have been investigated with regard to the evolution of microstructure and texture during room temperature rolling. In all the materials, no new texture peak appears until 20% thickness reduction and the texture is similar to initial fiber texture, which indicates that grain boundary-mediated deformation mechanisms are more active. The development of characteristic copper-type and brass-type rolling textures is visible beyond 40% reduction. High SFE materials, namely pure Ni and Ni-20Co alloy, develop a copper-type texture at large reduction, whereas in low SFE Ni-40Co and Ni-60Co alloys, the texture is clos...
The evolution of texture, grain size, grain shape, dislocation, and twin density has been determined...
In this letter, a conclusive evidence of the operation of planar slip along with grain boundary medi...
The process of dislocation structure evolution and nanocrystalline structure formation during high-e...
The micro-mechanisms associated with the evolution of deformation texture in nickel and nickel-cobal...
The evolution of deformation texture in a Ni-60Co alloy with low stacking fault energy and a grain s...
The evolution of crystallographic texture in a nanocrystalline nickel-20 wt% cobalt alloy has been i...
The micromechanical aspects of rolling texture development in Ni-40 wt.% Co alloy during very large ...
The effect of strain path change during rolling on the evolution of deformation texture has been stu...
The large-strain deformation of nanocrystalline nickel was investigated at room temperature and cryo...
Plastic deformation of metals and alloys are invariably accompanied by the development of texture. T...
Nanocrystalline (nc) materials exhibit superior mechanical properties compared with coarse-grained m...
The evolution of crystallographic texture in polycrystalline copper and nickel has been studied. The...
Effect of change in strain path during rolling and its role in the development of crystallographic t...
In the last few years it has become possible to produce reasonable sized metal samples with average ...
The deformation behaviour of macrocrystalline and nanocrystalline nickel shows a striking similarity...
The evolution of texture, grain size, grain shape, dislocation, and twin density has been determined...
In this letter, a conclusive evidence of the operation of planar slip along with grain boundary medi...
The process of dislocation structure evolution and nanocrystalline structure formation during high-e...
The micro-mechanisms associated with the evolution of deformation texture in nickel and nickel-cobal...
The evolution of deformation texture in a Ni-60Co alloy with low stacking fault energy and a grain s...
The evolution of crystallographic texture in a nanocrystalline nickel-20 wt% cobalt alloy has been i...
The micromechanical aspects of rolling texture development in Ni-40 wt.% Co alloy during very large ...
The effect of strain path change during rolling on the evolution of deformation texture has been stu...
The large-strain deformation of nanocrystalline nickel was investigated at room temperature and cryo...
Plastic deformation of metals and alloys are invariably accompanied by the development of texture. T...
Nanocrystalline (nc) materials exhibit superior mechanical properties compared with coarse-grained m...
The evolution of crystallographic texture in polycrystalline copper and nickel has been studied. The...
Effect of change in strain path during rolling and its role in the development of crystallographic t...
In the last few years it has become possible to produce reasonable sized metal samples with average ...
The deformation behaviour of macrocrystalline and nanocrystalline nickel shows a striking similarity...
The evolution of texture, grain size, grain shape, dislocation, and twin density has been determined...
In this letter, a conclusive evidence of the operation of planar slip along with grain boundary medi...
The process of dislocation structure evolution and nanocrystalline structure formation during high-e...