The evolution of microstructure and texture is studied during the heavy cold rolling and annealing of a highly cube-textured ({001}(100)) polycrystalline nickel sheet. Near and intermediate cube grains (≤5 deg and 5 deg to 10 deg misorientation, respectively, with exact cube orientation) are more unstable up to 60 pct reduction compared with the far cube grains (10 deg to 15 deg misorientation), and they rotate away to a rolling direction (RD)-rotated cube orientation ({013}(100); denoted by C RD). In contrast, beyond 60 pct reduction, near and intermediate cube grains are more stable than far cube grains, which results in an overall increase in the stability of cube orientation. After 90 pct cold rolling, several cube bands adjacent to or ...
The effect of ultrahigh straining on the evolution of cube texture in high purity nickel (99.97%) pr...
The effect of strain path change during cold rolling and subsequent annealing on the evolution of mi...
The evolution of cube texture has been investigated in pure Ni(99.97%)following ultra high strain...
The evolution of microstructure and texture is studied during the heavy cold rolling and annealing o...
The evolution of texture is studied in high purity (~99.7%) nickel sheets with widely different star...
A pure Ni sheet was heavily deformed up to an equivalent strain of 6.4 at room temperature and then ...
The microstructure and texture in pure nickel were investigated during multi-step cross cold rolling...
Development of cube texture ({100}<001>) was studied in high-purity Ni (99.97 pct) with widely diffe...
The recrystallization behaviour of cold-rolled nanocrystalline (nc) nickel has been studied at tempe...
Evolution of texture during cross rolling and subsequent annealing was studied in high-purity nickel...
The effect of strain path change during cold rolling on the evolution of microstructure, texture and...
The biaxial textures created in metals by rolling and annealing make them useful substrates for the ...
An attempt has been made to study the evolution of texture in high-purity Ni and Ni-5 at. pct W allo...
The effect of ultrahigh straining on the evolution of cube texture in high purity nickel (99.97%) pr...
Nickel sheets having starting grain sizes of 36 μm (fine grained starting material) and 800 μm (coar...
The effect of ultrahigh straining on the evolution of cube texture in high purity nickel (99.97%) pr...
The effect of strain path change during cold rolling and subsequent annealing on the evolution of mi...
The evolution of cube texture has been investigated in pure Ni(99.97%)following ultra high strain...
The evolution of microstructure and texture is studied during the heavy cold rolling and annealing o...
The evolution of texture is studied in high purity (~99.7%) nickel sheets with widely different star...
A pure Ni sheet was heavily deformed up to an equivalent strain of 6.4 at room temperature and then ...
The microstructure and texture in pure nickel were investigated during multi-step cross cold rolling...
Development of cube texture ({100}<001>) was studied in high-purity Ni (99.97 pct) with widely diffe...
The recrystallization behaviour of cold-rolled nanocrystalline (nc) nickel has been studied at tempe...
Evolution of texture during cross rolling and subsequent annealing was studied in high-purity nickel...
The effect of strain path change during cold rolling on the evolution of microstructure, texture and...
The biaxial textures created in metals by rolling and annealing make them useful substrates for the ...
An attempt has been made to study the evolution of texture in high-purity Ni and Ni-5 at. pct W allo...
The effect of ultrahigh straining on the evolution of cube texture in high purity nickel (99.97%) pr...
Nickel sheets having starting grain sizes of 36 μm (fine grained starting material) and 800 μm (coar...
The effect of ultrahigh straining on the evolution of cube texture in high purity nickel (99.97%) pr...
The effect of strain path change during cold rolling and subsequent annealing on the evolution of mi...
The evolution of cube texture has been investigated in pure Ni(99.97%)following ultra high strain...