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Fire retardancy behavior of polymer/...
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Zope, Indraneel Suhas.
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Fire retardancy behavior of polymer/clay nanocomposites
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Fire retardancy behavior of polymer/clay nanocomposites/ by Indraneel Suhas Zope.
作者:
Zope, Indraneel Suhas.
出版者:
Singapore :Springer Singapore : : 2018.,
面頁冊數:
xxxii, 165 p. :ill., digital ;24 cm.
內容註:
Introduction -- Literature Review -- Experimental Methodology -- Decomposition Behavior of Metal-ion Exchanged Clay -- Thermo-oxidative Decomposition Behavior of Polyamide 6 Nanocomposites with Metal-ion Exchanged Clays -- Thermo-oxidative Decomposition Behavior of Polyamide 6 Nanocomposites with Structurally Different Clays -- Controlling the Interfacial Interactions Between Clay and Host Polyamide 6 Matrix -- Clay Catalysis and Fire Retardancy of Polymer/Clay Nanocomposites: A Complete Overview.
Contained By:
Springer eBooks
標題:
Nanocomposites (Materials) - Combustion. -
電子資源:
http://dx.doi.org/10.1007/978-981-10-8327-3
ISBN:
9789811083273
Fire retardancy behavior of polymer/clay nanocomposites
Zope, Indraneel Suhas.
Fire retardancy behavior of polymer/clay nanocomposites
[electronic resource] /by Indraneel Suhas Zope. - Singapore :Springer Singapore :2018. - xxxii, 165 p. :ill., digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
Introduction -- Literature Review -- Experimental Methodology -- Decomposition Behavior of Metal-ion Exchanged Clay -- Thermo-oxidative Decomposition Behavior of Polyamide 6 Nanocomposites with Metal-ion Exchanged Clays -- Thermo-oxidative Decomposition Behavior of Polyamide 6 Nanocomposites with Structurally Different Clays -- Controlling the Interfacial Interactions Between Clay and Host Polyamide 6 Matrix -- Clay Catalysis and Fire Retardancy of Polymer/Clay Nanocomposites: A Complete Overview.
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.
ISBN: 9789811083273
Standard No.: 10.1007/978-981-10-8327-3doiSubjects--Topical Terms:
3331851
Nanocomposites (Materials)
--Combustion.
LC Class. No.: TA418.9.N35 / Z674 2018
Dewey Class. No.: 620.118
Fire retardancy behavior of polymer/clay nanocomposites
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Introduction -- Literature Review -- Experimental Methodology -- Decomposition Behavior of Metal-ion Exchanged Clay -- Thermo-oxidative Decomposition Behavior of Polyamide 6 Nanocomposites with Metal-ion Exchanged Clays -- Thermo-oxidative Decomposition Behavior of Polyamide 6 Nanocomposites with Structurally Different Clays -- Controlling the Interfacial Interactions Between Clay and Host Polyamide 6 Matrix -- Clay Catalysis and Fire Retardancy of Polymer/Clay Nanocomposites: A Complete Overview.
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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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