Maxwell 2D software is introduced in this paper to calculate the magnetic shielding effectiveness (MSE) properties of iron plate. The three-dimensional magnetic shield is thought isotropic and simplified as two-dimensional model to study its MSE properties by the finite element method. In this method, a uniform magnetic field is generated by two huge magnets and the MSE properties of iron plate, which is in the centre of the uniform magnetic field, is then calculated by the ratio of magnetic field intensity after and before magnetic shielding. All the results indicate that shape of shield materials affects the MSE properties much and the MSE properties of shield with square and circular shape with 3mm in depth are 39.3 and 53.5 dB, respecti...
The purpose of an EM shield is to prevent undesired electromagnetic coupling between an EM source an...
The shielding of buried three-phase high-voltage power lines can be done by placing them in conducti...
The use of superconducting (SC) materials is crucial for shielding quasi-static magnetic fields. How...
Maxwell 2D software is introduced in this paper to calculate the magnetic shielding effectiveness (M...
This paper proposes a new way to measure the shielding effectiveness of ferromagnetic shields. The p...
Shielding principles are essential for guiding the efficient design of effective shields. In this pa...
Magnetic Random Access Memory (MRAM) is a promising universal memory for the future due to its high-...
This paper proposes a modeling technique for a shield of magnetic material with finite dimensions. U...
In this paper, a semi-analytical model is derived to calculate the magnetic flux density around a ma...
In this paper, a method for the assessment of magnetic properties of ferromagnetic materials at low ...
In this paper a detailed description of different passive shields for Extremely Low Frequency (ELF) ...
A modeling approach is used to investigate the shielding efficiency of ferromagnetic shields for the ...
Measurements of the ferromagnetic materials' magnetic performance are of great importance to the des...
Purpose - To study the magnetic shielding of buried high-voltage (HV) cables by adding conductive me...
We studied magnetic flux penetration in a hybrid MgB2/Fe structure consisting of two coaxial cups in...
The purpose of an EM shield is to prevent undesired electromagnetic coupling between an EM source an...
The shielding of buried three-phase high-voltage power lines can be done by placing them in conducti...
The use of superconducting (SC) materials is crucial for shielding quasi-static magnetic fields. How...
Maxwell 2D software is introduced in this paper to calculate the magnetic shielding effectiveness (M...
This paper proposes a new way to measure the shielding effectiveness of ferromagnetic shields. The p...
Shielding principles are essential for guiding the efficient design of effective shields. In this pa...
Magnetic Random Access Memory (MRAM) is a promising universal memory for the future due to its high-...
This paper proposes a modeling technique for a shield of magnetic material with finite dimensions. U...
In this paper, a semi-analytical model is derived to calculate the magnetic flux density around a ma...
In this paper, a method for the assessment of magnetic properties of ferromagnetic materials at low ...
In this paper a detailed description of different passive shields for Extremely Low Frequency (ELF) ...
A modeling approach is used to investigate the shielding efficiency of ferromagnetic shields for the ...
Measurements of the ferromagnetic materials' magnetic performance are of great importance to the des...
Purpose - To study the magnetic shielding of buried high-voltage (HV) cables by adding conductive me...
We studied magnetic flux penetration in a hybrid MgB2/Fe structure consisting of two coaxial cups in...
The purpose of an EM shield is to prevent undesired electromagnetic coupling between an EM source an...
The shielding of buried three-phase high-voltage power lines can be done by placing them in conducti...
The use of superconducting (SC) materials is crucial for shielding quasi-static magnetic fields. How...