Materials for electromagnetic shielding are increasingly needed to protect electronic devices from interference problems and to avoid dangerous effects on human health due to electromagnetic radiation. Several shielding applications require solutions that textiles can suitably fulfill. Here the electromagnetic interference shielding of metallized, PPy-coated woven and non-woven polyester fabrics is provided in the frequency range 100—1000 MHz, measuring the insertion losses produced by these conductive fabrics in a dual TEM cell. From the insertion loss data, the shielding effectiveness, and the reflection and absorption coefficients are estimated
The electromagnetic shielding effectiveness (EMSE) of herringbone, whipcord, barathea, and crepe wov...
In this study, the different proportion of conductive component blended with polypropylene yarn were...
The electromagnetic shielding effectiveness (EMSE) of herringbone, whipcord, barathea, and crepe wov...
Materials for electromagnetic shielding are increasingly needed to protect electronic devices from i...
ABSTRACT: Materials for electromagnetic shielding are increasingly needed to protect electronic devi...
Several shielding applications, to protect human health and electronic devices against dangerous eff...
Several shielding applications, to protect human health and electronic devices against dangerous eff...
144-148The effect of material type, yarn count, pick density, type of mordant and layers of fabrics ...
271-277Cotton and metal coated zari wrapped polyester filament yarns in different proportions have b...
In this paper, electromagnetic shielding effectiveness of woven fabrics with high electrical conduct...
The usage of electrical and electronic devices that operate at high frequencies has grown rapidly in...
In this paper, electromagnetic shielding effectiveness of woven fabrics with high electrical conduct...
The usage of electrical and electronic devices that operate at high frequencies has grown rapidly in...
The advent of conductive textiles has allowed the design of much more lightweight and cheaper electr...
In this study, electromagnetic shielding properties of needle-punched nonwoven fabrics were investig...
The electromagnetic shielding effectiveness (EMSE) of herringbone, whipcord, barathea, and crepe wov...
In this study, the different proportion of conductive component blended with polypropylene yarn were...
The electromagnetic shielding effectiveness (EMSE) of herringbone, whipcord, barathea, and crepe wov...
Materials for electromagnetic shielding are increasingly needed to protect electronic devices from i...
ABSTRACT: Materials for electromagnetic shielding are increasingly needed to protect electronic devi...
Several shielding applications, to protect human health and electronic devices against dangerous eff...
Several shielding applications, to protect human health and electronic devices against dangerous eff...
144-148The effect of material type, yarn count, pick density, type of mordant and layers of fabrics ...
271-277Cotton and metal coated zari wrapped polyester filament yarns in different proportions have b...
In this paper, electromagnetic shielding effectiveness of woven fabrics with high electrical conduct...
The usage of electrical and electronic devices that operate at high frequencies has grown rapidly in...
In this paper, electromagnetic shielding effectiveness of woven fabrics with high electrical conduct...
The usage of electrical and electronic devices that operate at high frequencies has grown rapidly in...
The advent of conductive textiles has allowed the design of much more lightweight and cheaper electr...
In this study, electromagnetic shielding properties of needle-punched nonwoven fabrics were investig...
The electromagnetic shielding effectiveness (EMSE) of herringbone, whipcord, barathea, and crepe wov...
In this study, the different proportion of conductive component blended with polypropylene yarn were...
The electromagnetic shielding effectiveness (EMSE) of herringbone, whipcord, barathea, and crepe wov...