Crystallographic texture development during recrystallization in samples cold-rolled to 78, 87 and 96% thickness reduction R were measured using EBSD on an in-situ heating stage inside a field emission scanning electron microscope. Nucleation, recrystallization and grain growth of grains having {411} orientation occurred intensely and steadily inside the deformed region. Through this phenomenon, grains having {411} showed larger average grain sizes than other textures at R = 87% and 96%. Due to the {411} texture component, the {111} texture component, which is known as a high reduction emerging texture, weakened. At R = 76%, grains having Goss orientation were frequently observed. However, at R = 87% and 96%, the {111} and the {411} t...
It is well established that there is an interplay and interaction between the processing steps at fa...
Development of recrystallization texture in cold-rolled Ti-bearing IF-steel was investigated using X...
The effect of warm rolling in the 50 degrees C-300 degrees C temperature range on the microstructure...
Evolution of texture and α*-fiber texture formation mechanism of Fe-0.65%Si non-oriented electrical ...
A secondary recrystallization Lab study focusing on the secondary recrystallization temper- ature an...
The texture changes taking place during the recrystallization of a warm-rolled low-carbon steel were...
A secondary recrystallization Lab study focusing on the secondary recrystallization temperature and ...
The magnetic properties of non-oriented electrical steel, widely used in electric machines, are clos...
OM (optical microscopy) and EBSD (electron backscatter diffraction) techniques were used to study mi...
The optimization of magnetic and physical properties of electrical steel is imperative for many engi...
Nonoriented electrical steels are mainly used as the core materials in motors and generators. The m...
The understanding of Goss texture in Hi-B electrical steels possesses significant industrial and aca...
A fine-grain and high-strength Nb-IF steel under hot rolling was employed to study the effects of co...
© 2017 ISIJ. In this investigation, a grain oriented silicon steel was annealed from a starting stat...
The behaviors of deformation and recrystallization and textures evolution of 3% (mass fraction) Si c...
It is well established that there is an interplay and interaction between the processing steps at fa...
Development of recrystallization texture in cold-rolled Ti-bearing IF-steel was investigated using X...
The effect of warm rolling in the 50 degrees C-300 degrees C temperature range on the microstructure...
Evolution of texture and α*-fiber texture formation mechanism of Fe-0.65%Si non-oriented electrical ...
A secondary recrystallization Lab study focusing on the secondary recrystallization temper- ature an...
The texture changes taking place during the recrystallization of a warm-rolled low-carbon steel were...
A secondary recrystallization Lab study focusing on the secondary recrystallization temperature and ...
The magnetic properties of non-oriented electrical steel, widely used in electric machines, are clos...
OM (optical microscopy) and EBSD (electron backscatter diffraction) techniques were used to study mi...
The optimization of magnetic and physical properties of electrical steel is imperative for many engi...
Nonoriented electrical steels are mainly used as the core materials in motors and generators. The m...
The understanding of Goss texture in Hi-B electrical steels possesses significant industrial and aca...
A fine-grain and high-strength Nb-IF steel under hot rolling was employed to study the effects of co...
© 2017 ISIJ. In this investigation, a grain oriented silicon steel was annealed from a starting stat...
The behaviors of deformation and recrystallization and textures evolution of 3% (mass fraction) Si c...
It is well established that there is an interplay and interaction between the processing steps at fa...
Development of recrystallization texture in cold-rolled Ti-bearing IF-steel was investigated using X...
The effect of warm rolling in the 50 degrees C-300 degrees C temperature range on the microstructure...