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Fire Retardancy Behavior of Polymer/Clay Nanocomposites (Hardcover, 1st ed. 2018): Indraneel Suhas Zope Fire Retardancy Behavior of Polymer/Clay Nanocomposites (Hardcover, 1st ed. 2018)
Indraneel Suhas Zope
R3,892 R3,245 Discovery Miles 32 450 Save R647 (17%) Ships in 12 - 17 working days

This thesis investigates the early ignition behavior of polymer/clay nanocomposites, which are perceived as potential eco-friendly flame retardant systems. It examines the correlation between clay structural chemistry and high-temperature transformations with clay-assisted decomposition of organic macromolecules. In particular, it investigates the unique effects of metal ions like Mg2+, Al3+ and Fe3+ that are inherent in clays (smectite) on the combustion and thermo-oxidative decomposition of polyamide 6. The results indicate that metal ions present on/in montmorillonite platelets have preferential reactivity towards peroxy/alkoxy groups during polyamide 6 thermal decomposition. Lastly, a simple solution in the form of a physical coating on clay surface is proposed, based on the role of polymer-clay interfacial interaction.

Fire Retardancy Behavior of Polymer/Clay Nanocomposites (Paperback, Softcover reprint of the original 1st ed. 2018): Indraneel... Fire Retardancy Behavior of Polymer/Clay Nanocomposites (Paperback, Softcover reprint of the original 1st ed. 2018)
Indraneel Suhas Zope
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

This thesis investigates the early ignition behavior of polymer/clay nanocomposites, which are perceived as potential eco-friendly flame retardant systems. It examines the correlation between clay structural chemistry and high-temperature transformations with clay-assisted decomposition of organic macromolecules. In particular, it investigates the unique effects of metal ions like Mg2+, Al3+ and Fe3+ that are inherent in clays (smectite) on the combustion and thermo-oxidative decomposition of polyamide 6. The results indicate that metal ions present on/in montmorillonite platelets have preferential reactivity towards peroxy/alkoxy groups during polyamide 6 thermal decomposition. Lastly, a simple solution in the form of a physical coating on clay surface is proposed, based on the role of polymer-clay interfacial interaction.

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