2014
DOI: 10.1002/pc.23231
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Enhancement of organoclay on thermal and flame retardant properties of polystyrene/magnesium hydroxide composite

Abstract: Organoclay (organically modified montmorillonite, OMMT) was introduced to the composite of polystyrene/magnesium hydroxide (PS/MH) by melt compounding. The structure of the obtained PS/MH/OMMT composite was characterized by X-ray diffraction and transmission electron microscopy. Thermal degradation behavior and flame retardancy of the composite were investigated by various means. It is shown that the PS/MH/OMMT composite has an intercalated nanostructure with the PS chains intercalated between the OMMT layers … Show more

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Cited by 21 publications
(17 citation statements)
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“…[8] Their incorporation within polymer blends not only increases the flame retardancy but also reduces the smoke emissions' toxicity. [205] Other advantages of incorporating aluminum hydroxide in polymers include higher Enhanced thermal and fire retardant properties [212] toughness, low density, and corrosion resistance. It is common to see aluminum hydroxide used in poly(vinyl chloride) and polyethylene wires, as well as in combination with silicones, nanoclays, and boron compounds.…”
Section: Aluminum Hydroxidementioning
confidence: 99%
“…[8] Their incorporation within polymer blends not only increases the flame retardancy but also reduces the smoke emissions' toxicity. [205] Other advantages of incorporating aluminum hydroxide in polymers include higher Enhanced thermal and fire retardant properties [212] toughness, low density, and corrosion resistance. It is common to see aluminum hydroxide used in poly(vinyl chloride) and polyethylene wires, as well as in combination with silicones, nanoclays, and boron compounds.…”
Section: Aluminum Hydroxidementioning
confidence: 99%
“…In addition, the SPR of EC/5%EG/5%OMMT/5%MH is basically the smallest compared with that of the others. This is mostly attributed to the synergistic retarding effect existing not only between EG and OMMT but also between MH and EG or OMMT …”
Section: Resultsmentioning
confidence: 99%
“…The overall conclusion is that the PS nanocomposite has less thermal and thermo‐oxidative stability than its virgin polymer. Intercalated PS nanocomposites with magnesium hydroxide and organically modified nanoclay showed improvement in maximum degradation temperature and reduced the mass loss rate at higher temperatures . The filler formed a continuous and compact char reside layer which enhanced the properties.…”
Section: Introductionmentioning
confidence: 98%