Journal of Applied Polymer Science · 2005 · 97 citations · 30 references
Materials ScienceChemical EngineeringRubber LatexEngineeringPolymer MaterialMechanical PropertiesClay MineralPolymer ScienceNanostructured PolymerPermeability Properties/Sbr NanocompositesPolymer CompositesPolymer NanocompositesMontmorillonite/styrene‐butadiene RubberNanocompositePolymer Chemistry
Abstract The flammability of montmorillonite (MMT)/SBR nanocomposites, prepared by the technique of cocoagulating rubber latex and clay aqueous suspension, was investigated. Flammability studies, performed on the cone calorimeter, showed that the maximum heat release rate (HRR) of SBR decreased from 1987 to 1442 kw/m 2 with the introduction of nanoclay (20 phr). This nanocomposite had the lowest mass loss rate and the largest amount of char upon combustion compared with conventional SBR composites with the same clay loading and pure SBR. The permeability properties of MMT/SBR composites were also measured. It was deduced that the lowered permeability was responsible for the reduced mass loss rate and hence the lower HRR. Unfortunately, the oxygen index (OI) of the nanocomposites was not as high as expected. Combination of Mg(OH) 2 and clay was effective for the improvement of both mechanical properties and OI. © 2005 Wiley Periodicals, Inc. J Appl Polym Sci 97: 844–849, 2005
30
Polymer Layered Silicate Nanocomposites
Emmanuel P. Giannelis · Advanced Materials · 1996 · 3.5K citations
Engineering, Polymer Nanotechnology, Nanostructured Polymer +16
Alexander B. Morgan, Jeffrey W. Gilman · Journal of Applied Polymer Science · 2002 · 620 citations
Engineering, Transmission Electron Microscopy, Nanostructured Polymer +21