The rapid increase in electromagnetic interference has received a serious attention from researchers who responded by producing a variety of radar absorbing materials especially at high gigahertz frequencies. Ongoing investigation is being carried out in order to find the best absorbing materials which can fulfill the requirements for smart absorbing materials which are lightweight, broad bandwidth absorption, stronger absorption etc. Thus, to improve the absorbing capability, several important parameters need to be taken into consideration such as filler type, loading level, type of polymer matrix, physical thickness, grain sizes, layers and bandwidth. Therefore, this article introduces the electromagnetic wave absorption mechanisms and th...
International audienceThis article presents a strategy for designing optimal microwave planar multil...
The rapid growth of electronic systems and devices operating within the gigahertz (GHz) frequency ra...
We report on the electromagnetic wave absorption properties of amorphous alloy-ferrite-epoxy composi...
Mitigation of the electromagnetic radiations is essential for reliable communication of information....
There has been a long-standing interest in the development of radar absorbing materials (RAMs) for m...
Abstract The purpose of the study is to researching of composite materials for electromagnetic saf...
Different from previous works which have focused on broadening the bandwidth, we propose an electrom...
Electromagnetic interference (EMI) shielding refers to the ability of a material to block the EM wav...
Metamaterials are materials artificially created by human to have characteristics that do not exist ...
ABSTRACT: This paper presents a comparative study involving experimental and numerical behaviors of ...
Radio absorbing materials based on polyurethane filled with multicomponent particles of MnZn ferrite...
629-634Compositional designing of effective graded radar absorbing material for low observable techn...
With the rapid development of electronic technology and modern radar detection system, there is incr...
The use of sophisticated medical equipment that operates at microwave frequencies draws attention to...
With the rapid development of communication technology in civil and military fields, the problem of ...
International audienceThis article presents a strategy for designing optimal microwave planar multil...
The rapid growth of electronic systems and devices operating within the gigahertz (GHz) frequency ra...
We report on the electromagnetic wave absorption properties of amorphous alloy-ferrite-epoxy composi...
Mitigation of the electromagnetic radiations is essential for reliable communication of information....
There has been a long-standing interest in the development of radar absorbing materials (RAMs) for m...
Abstract The purpose of the study is to researching of composite materials for electromagnetic saf...
Different from previous works which have focused on broadening the bandwidth, we propose an electrom...
Electromagnetic interference (EMI) shielding refers to the ability of a material to block the EM wav...
Metamaterials are materials artificially created by human to have characteristics that do not exist ...
ABSTRACT: This paper presents a comparative study involving experimental and numerical behaviors of ...
Radio absorbing materials based on polyurethane filled with multicomponent particles of MnZn ferrite...
629-634Compositional designing of effective graded radar absorbing material for low observable techn...
With the rapid development of electronic technology and modern radar detection system, there is incr...
The use of sophisticated medical equipment that operates at microwave frequencies draws attention to...
With the rapid development of communication technology in civil and military fields, the problem of ...
International audienceThis article presents a strategy for designing optimal microwave planar multil...
The rapid growth of electronic systems and devices operating within the gigahertz (GHz) frequency ra...
We report on the electromagnetic wave absorption properties of amorphous alloy-ferrite-epoxy composi...