The effect of transient electric-current pulses (ECP) on the evolution of microstructure and texture of cryogenically-rolled Cu-30Zn brass was determined. The pulsing was shown to lead to recrystallization followed by grain growth. The mean grain size in the recrystallized material was 0.5 μm, thus indicating that cryogenic rolling coupled with ECP is suitable for the production of an ultrafine-grain microstructure in Cu-30Zn brass. The differences in the recrystallization texture in pulsed versus statically-annealed conditions suggested a distinct recrystallization mechanism during ECP
Electron backscatter diffraction was used to study grain structure development in heavily cryogenica...
The grain-growth behavior of cryogenically-rolled Cu-30Zn brass during isothermal annealing at 900 °...
A two-step approach involving cryogenic rolling and subsequent recrystallization annealing was devel...
The effect of transient electric-current pulses (ECP) on the evolution of microstructure and texture...
Large deformation at cryogenic temperatures is sometimes considered as a promising and cost-effectiv...
The effect of electric-current pulses on the evolution of microstructure and texture in cryogenicall...
The effect of electric-current pulses on the evolution of microstructure and texture in cryogenicall...
The effect of electric-current pulses on the evolution of microstructure and texture in cryogenicall...
The static-annealing behavior of cryogenically-rolled Cu-30Zn brass over a wide range of temperature...
The static-annealing behavior of cryogenically-rolled Cu–30Zn brass over a wide range of temperature...
The static-annealing behavior of cryogenically-rolled Cu–30Zn brass over a wide range of temperature...
A high-resolution electron backscatter diffraction technique was applied to quantify grain-structure...
A high-resolution electron backscatter diffraction technique was applied to quantify grain-structure...
Electron backscatter diffraction was used to study grain structure development in heavily cryogenica...
Electron backscatter diffraction was used to study grain structure development in heavily cryogenica...
Electron backscatter diffraction was used to study grain structure development in heavily cryogenica...
The grain-growth behavior of cryogenically-rolled Cu-30Zn brass during isothermal annealing at 900 °...
A two-step approach involving cryogenic rolling and subsequent recrystallization annealing was devel...
The effect of transient electric-current pulses (ECP) on the evolution of microstructure and texture...
Large deformation at cryogenic temperatures is sometimes considered as a promising and cost-effectiv...
The effect of electric-current pulses on the evolution of microstructure and texture in cryogenicall...
The effect of electric-current pulses on the evolution of microstructure and texture in cryogenicall...
The effect of electric-current pulses on the evolution of microstructure and texture in cryogenicall...
The static-annealing behavior of cryogenically-rolled Cu-30Zn brass over a wide range of temperature...
The static-annealing behavior of cryogenically-rolled Cu–30Zn brass over a wide range of temperature...
The static-annealing behavior of cryogenically-rolled Cu–30Zn brass over a wide range of temperature...
A high-resolution electron backscatter diffraction technique was applied to quantify grain-structure...
A high-resolution electron backscatter diffraction technique was applied to quantify grain-structure...
Electron backscatter diffraction was used to study grain structure development in heavily cryogenica...
Electron backscatter diffraction was used to study grain structure development in heavily cryogenica...
Electron backscatter diffraction was used to study grain structure development in heavily cryogenica...
The grain-growth behavior of cryogenically-rolled Cu-30Zn brass during isothermal annealing at 900 °...
A two-step approach involving cryogenic rolling and subsequent recrystallization annealing was devel...