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Fire Retardant Fillers that Rely on Endothermic Decomposition

4 Fire Retardant Fillers that Rely on Endothermic Decomposition [Pg.269]

These fillers are of great industrial importance, and are the main subject of this chapter. They owe their fire retardant effectiveness to their ability to decompose endothermically at polymer pyrolysis temperatures, with the release of inert gases such as water. Thus, unlike some other flame retardants, they are able to combine a high level of flame retardancy, with low smoke and low toxic and corrosive gas emissions, and are thus becoming of increasing importance. One of the simplest such materials is aluminium hydroxide (also known as alumina trihydrate, ATH). [Pg.269]




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Endothermic fillers

Endothermicities

Endothermicity

Endotherms

Fire retardance

Fire retardancy

Fire retardents

Fire-retardant fillers

Fire-retardant fillers decomposition

Fire-retarding

Retardant fillers)

Retardant fillers) endothermic

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