The properties of nitrile rubber (NBR) reinforced by multiwalled carbon nanotube (MWCNT), conductive carbon black (CCB), carbon black (CB), and precipitated silica (PSi) were investigated via viscoelastic behavior, bound rubber content, electrical properties, cross-link density, and mechanical properties. The filler content was varied from 0 to 15 phr. MWCNT shows the greatest magnitude of reinforcement considered in terms of tensile strength, modulus, hardness, and abrasion resistance followed by CCB, CB, and PSi. The MWCNT filled system also exhibits extremely high levels of filler network and trapped rubber even at relatively low loading (5 phr) leading to high electrical properties and poor dynamic mechanical properties. Although CCB po...
Post-treatment removal of dispersion agents from carbon nanotube/rubber composites can greatly enhan...
The reinforcing ability of the fillers results in significant improvements in properties of polymer ...
In this article, we examine the effects of two different nanostructured carbons when they are incorp...
Multi-walled carbon nanotubes (MWNTs) were used to prepare natural rubber (NR) nanocomposites. Our f...
As the earliest applied elastomer material, natural rubber has undergone development for nearly I 00...
The original form of Natural Rubber (NR) has limited usage despite its excellent elasticity and reve...
The effects of carbon nanotube (CNT) in combination with carbon black (CB) on the properties of acry...
The outstanding properties of carbon nanotubes (CNT) have generated a lot of interest at a scientist...
Natural rubber (NR) vulcanizates reinforced by carbon nanotubes (CNT, 3 phr), graphite particles (GP...
Natural rubber with 50 mol % epoxidation (ENR-50) was filled with carbon nanotubes (CNTs) and conduc...
Natural rubber/Polyamide 11 (TPNR) nanocomposite were prepared by incorporation of treated and untre...
Recently, elastomer reinforced with nanofillers have attracted great interest due to their propertie...
The reinforcement mechanism of carbon nanotubes (CNT) on styrene butadiene rubber is studied through...
In this research, the effects of three different nano-materials (Nano-Carbon Black, Nano-ZnO, and Mu...
The present article describes preparation, characteri-zation, and physical properties of nanoparticl...
Post-treatment removal of dispersion agents from carbon nanotube/rubber composites can greatly enhan...
The reinforcing ability of the fillers results in significant improvements in properties of polymer ...
In this article, we examine the effects of two different nanostructured carbons when they are incorp...
Multi-walled carbon nanotubes (MWNTs) were used to prepare natural rubber (NR) nanocomposites. Our f...
As the earliest applied elastomer material, natural rubber has undergone development for nearly I 00...
The original form of Natural Rubber (NR) has limited usage despite its excellent elasticity and reve...
The effects of carbon nanotube (CNT) in combination with carbon black (CB) on the properties of acry...
The outstanding properties of carbon nanotubes (CNT) have generated a lot of interest at a scientist...
Natural rubber (NR) vulcanizates reinforced by carbon nanotubes (CNT, 3 phr), graphite particles (GP...
Natural rubber with 50 mol % epoxidation (ENR-50) was filled with carbon nanotubes (CNTs) and conduc...
Natural rubber/Polyamide 11 (TPNR) nanocomposite were prepared by incorporation of treated and untre...
Recently, elastomer reinforced with nanofillers have attracted great interest due to their propertie...
The reinforcement mechanism of carbon nanotubes (CNT) on styrene butadiene rubber is studied through...
In this research, the effects of three different nano-materials (Nano-Carbon Black, Nano-ZnO, and Mu...
The present article describes preparation, characteri-zation, and physical properties of nanoparticl...
Post-treatment removal of dispersion agents from carbon nanotube/rubber composites can greatly enhan...
The reinforcing ability of the fillers results in significant improvements in properties of polymer ...
In this article, we examine the effects of two different nanostructured carbons when they are incorp...