Silicon steel is known as electrical steel and it is extensively used for electrical applications such as preferred core material for equipment like transformer cores, motors, and generators. There are two types of electrical steels namely cold rolled grain oriented and cold rolled non grain oriented electrical steels. The properties required for these steels are a high perme-ability and high magnetic induction, low magnetic losses (watt losses), and low magnetostriction. The factors like high permeability and induction is effective in reducing the size and weight of the parts thus increases the effi-ciency; low magnetic losses reduce the generation of heat and energy consumption thus helps in minimizing energy; and a low magnet...
Electrical steels can be classified into two groups: grain-oriented (GO) and non-oriented (NGO) elec...
Thin laminations of non-grain oriented (NO) electrical steels form the magnetic core of rotating ele...
The magnetic properties of electrical steel such as magnetization behavior and specific magnetic los...
Silicon steel is known as electrical steel and it is extensively used for electrical applicatio...
Nowadays, energy shortages and environmental pollution have received a lot of attention, which makes...
The properties of the lamination of rotating electrical machines made of non-grain oriented electric...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
Non oriented electrical steels are soft magnetic materials used in the core of electrical motors. No...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
The magnetic properties of non-oriented electrical steel, widely used in electric machines, are clos...
The physical origins of the magnetic properties of nonoriented electrical steels; its relations to m...
Due to the nonlinear material behavior and contradicting application requirements, the selection of ...
The optimization of magnetic and physical properties of electrical steel is imperative for many engi...
SILICON steel should be regarded as something more than just another alloy steel. It is a basic ...
Crystallographic texture has an important effect on the magnetic quality of electrical steel: a spec...
Electrical steels can be classified into two groups: grain-oriented (GO) and non-oriented (NGO) elec...
Thin laminations of non-grain oriented (NO) electrical steels form the magnetic core of rotating ele...
The magnetic properties of electrical steel such as magnetization behavior and specific magnetic los...
Silicon steel is known as electrical steel and it is extensively used for electrical applicatio...
Nowadays, energy shortages and environmental pollution have received a lot of attention, which makes...
The properties of the lamination of rotating electrical machines made of non-grain oriented electric...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
Non oriented electrical steels are soft magnetic materials used in the core of electrical motors. No...
Steel containing a high Si-content is mainly used as electrical steel in flux carrying electrical ma...
The magnetic properties of non-oriented electrical steel, widely used in electric machines, are clos...
The physical origins of the magnetic properties of nonoriented electrical steels; its relations to m...
Due to the nonlinear material behavior and contradicting application requirements, the selection of ...
The optimization of magnetic and physical properties of electrical steel is imperative for many engi...
SILICON steel should be regarded as something more than just another alloy steel. It is a basic ...
Crystallographic texture has an important effect on the magnetic quality of electrical steel: a spec...
Electrical steels can be classified into two groups: grain-oriented (GO) and non-oriented (NGO) elec...
Thin laminations of non-grain oriented (NO) electrical steels form the magnetic core of rotating ele...
The magnetic properties of electrical steel such as magnetization behavior and specific magnetic los...