Structuring and Conductivity of Polymer Composites |
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Page 48
... vulcanizates , obtained by peroxide vulcanization , in vulcanizates , obtained by additive vulcanization , the filler particles form intensive electrically conducting network . Vulcanization initiated by peroxides forms more branched ...
... vulcanizates , obtained by peroxide vulcanization , in vulcanizates , obtained by additive vulcanization , the filler particles form intensive electrically conducting network . Vulcanization initiated by peroxides forms more branched ...
Page 51
... vulcanizate is made by the homogeneity effect of the filler distribution ( effective usage of the filler , the absence of ... vulcanizates deteriorate . 1.3 Effects of the Filler Distribution in Polymer Matrix on Electric Conductivity of ...
... vulcanizate is made by the homogeneity effect of the filler distribution ( effective usage of the filler , the absence of ... vulcanizates deteriorate . 1.3 Effects of the Filler Distribution in Polymer Matrix on Electric Conductivity of ...
Page 88
... vulcanizates with 50 mass parts of channel carbon black and vulcanizates of BSC elastomer with 5 mass parts of HAF carbon black / 175 / showed that on the initial cycle p increases first , until elongation reaches 50 - 60 % . Then it ...
... vulcanizates with 50 mass parts of channel carbon black and vulcanizates of BSC elastomer with 5 mass parts of HAF carbon black / 175 / showed that on the initial cycle p increases first , until elongation reaches 50 - 60 % . Then it ...
Contents
114 | 2 |
vulcanization of organosilicon ECPCs | 36 |
conductivity of filled organosilicon rubbers | 43 |
Copyright | |
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Common terms and phrases
60 mass additive vulcanization application based on SCTV carbon black concentration carbon black particles carbon fibers cathode characterized coefficient components composite materials composites based conductivity of ECPCs cross-linking curves decrease deformation density dielectric permeability diffusion displayed ECPCS based effect electric resistance electrically conducting filler electrically conducting properties electrically conducting rubber electrolysis electron elongation fibers filler concentration filler particle distribution filler particles filling degree formation free radicals graphite growth homogeneity increase induces interaction interphase macromolecules magnetic field materials molecular obtained Ohm-m Ohmxm organosilicon P357E carbon black P803 carbon black paramagnetic parameters percolation theory percolation threshold peroxide vulcanization polymer composites polymer matrix polymer-filler polymerization possess pressure processes properties of ECPCs pyrolized pyrolysis radiation rubber mixture samples SCTN SCTV elastomer SCTV-based shunt siloxane structure surface temperature dependence tensoresistors tensosensitivity values viscosity voltage volumeric vulcanizates vulcanization network vulcanization technique