The dielectric properties of Thermoplastic Natural Rubber (TPNR)/Strontium Titanate (SrTiO3) composites was determined at room temperature, 27oC using the Impedance Analyzer at frequencies 10 Hz to 1 MHz. TPNR is formed as the matrix while SrTiO3 acts as the filler. Six samples were prepared at percentages of fillers from 0 to 50% at 10% intervals. The results indicate that the dielectric constant is almost independent of frequency from 100 Hz to 1 MHz, but the dielectric loss factor decreased with increasing frequency. This could probably be due to interfacial polarization and ionic losses. The dielectric properties are also affected by the composition of the filler, SrTiO3
733-737Studies on dielectric property of natural rubber (NR) and some synthetic rubbers viz., styren...
3rd Asian Meeting on Ferroelectrics, AMF-3, Hong Kong, 12-15 December 2000The complex dielectric per...
Strontium Titanate, SrTiO3 samples were prepared using the conventional solid state reaction method....
The dielectric properties of Thermoplastic Natural Rubber (TPNR)/Strontium Titanate (SrTiO3) composi...
This research was designed to form better dielectric composite material using one steady state diele...
The talk presented at 29th Annual General Meeting Of Materials Research Society Of India And Nationa...
Composite systems of epoxy resin and SrTiO3 nanoparticles have been prepared and studied in differen...
This research was designed to form better dielectric composite material using one steady state diele...
Silicone rubber is a polymer with low dielectric permittivity which needs to be improved for outdoor...
Natural rubber (NR) nanocomposites have been prepared with hydroxylated barium titanate filler (BaTi...
The purpose of this work is to experimentally study the dielectric properties of nanostruc-tured cer...
This research was designed to form better dielectric composite material using one steady state diele...
The series of composite materials based on polystyrene and non-ferroelectric BaTiO3 nanoparticles ((...
Room temperature vulcanized (RTV) silicone rubber SR/TiO2 nanocomposites and microcomposites are dev...
Composites of strontium titanate (SrTiO3) at loadings up to 50 vol.% with polar poly(butylene tereph...
733-737Studies on dielectric property of natural rubber (NR) and some synthetic rubbers viz., styren...
3rd Asian Meeting on Ferroelectrics, AMF-3, Hong Kong, 12-15 December 2000The complex dielectric per...
Strontium Titanate, SrTiO3 samples were prepared using the conventional solid state reaction method....
The dielectric properties of Thermoplastic Natural Rubber (TPNR)/Strontium Titanate (SrTiO3) composi...
This research was designed to form better dielectric composite material using one steady state diele...
The talk presented at 29th Annual General Meeting Of Materials Research Society Of India And Nationa...
Composite systems of epoxy resin and SrTiO3 nanoparticles have been prepared and studied in differen...
This research was designed to form better dielectric composite material using one steady state diele...
Silicone rubber is a polymer with low dielectric permittivity which needs to be improved for outdoor...
Natural rubber (NR) nanocomposites have been prepared with hydroxylated barium titanate filler (BaTi...
The purpose of this work is to experimentally study the dielectric properties of nanostruc-tured cer...
This research was designed to form better dielectric composite material using one steady state diele...
The series of composite materials based on polystyrene and non-ferroelectric BaTiO3 nanoparticles ((...
Room temperature vulcanized (RTV) silicone rubber SR/TiO2 nanocomposites and microcomposites are dev...
Composites of strontium titanate (SrTiO3) at loadings up to 50 vol.% with polar poly(butylene tereph...
733-737Studies on dielectric property of natural rubber (NR) and some synthetic rubbers viz., styren...
3rd Asian Meeting on Ferroelectrics, AMF-3, Hong Kong, 12-15 December 2000The complex dielectric per...
Strontium Titanate, SrTiO3 samples were prepared using the conventional solid state reaction method....