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Covers the following topics: Strategies; Intumescence: Mechanism studies; New intumescent polymetric materials; Flame retarded intumescent textiles; Intumescence - an environmentally friendly process?
Fire resistant polymers --- Fire retardant polymers --- Flame retardant polymers --- Fire resistant materials --- Polymers
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Fire resistant polymers --- #KVIV --- Fire retardant polymers --- Flame retardant polymers --- Fire resistant materials --- Polymers --- Patents
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Analysis of Flame Retardancy in Polymer Science is a scientific/practical book that is conceptualized, designed, and written for students, early-career researchers, and junior engineers to explain the basic principles of fire analysis/characterization methods/methodologies, from flammability, ignition, and fire spread to forced convection and related analyses and to elucidate the mechanisms underlying flame retardancy in both gas and condensed phases followed by correlation between laboratory- and real-scale fire analyses as well as fire analysis from an industrial standpoint. This book is also an indispensable resource for identifying and mounting the latest achievements in fire analysis/characterization methods to frame the effects of fire evaluation strategies to be utilized for research and development. The book also gives a broad description of fire analysis related to different standards and regulations for different applications in different geographic zones.
Fire resistant polymers. --- Polymer engineering --- Research. --- Polymers --- Chemical engineering --- Fire retardant polymers --- Flame retardant polymers --- Fire resistant materials --- Design
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Fire resistant polymers. --- Fire resistant materials. --- Flame resistant materials --- Fireproofing --- Fire retardant polymers --- Flame retardant polymers --- Fire resistant materials --- Polymers --- Fire retardant materials
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Fire resistant polymers. --- Triazenes. --- Polyurethanes. --- Urethane polymers --- Polymers --- Urethanes --- Diazoamines --- Diazo compounds --- Fire retardant polymers --- Flame retardant polymers --- Fire resistant materials
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Fire resistant polymers --- Nanocomposites (Materials) --- Nanocomposite materials --- Nanostructured composite materials --- Nanostructured composites --- Composite materials --- Nanostructured materials --- Fire retardant polymers --- Flame retardant polymers --- Fire resistant materials --- Polymers --- Fire resistant polymers.
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Fireproofing agents. --- Fire resistant plastics. --- Fireproofing of fabrics. --- Fabrics, Fireproofing of --- Fire resistant materials --- Fireproofing --- Plastics --- Flame retardant plastics --- Fire prevention --- Chemical fire retardants --- Fire resisting agents --- Fire retardants --- Flame retardants --- Flameproofing agents
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Fireproofing agents --- Fire resistant plastics --- Fireproofing of fabrics --- Chemical Engineering --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Fireproofing agents. --- Fire resistant plastics. --- Fireproofing of fabrics. --- Fabrics, Fireproofing of --- Flame retardant plastics --- Fire resistant materials --- Fireproofing --- Plastics --- Chemical fire retardants --- Fire resisting agents --- Fire retardants --- Flame retardants --- Flameproofing agents --- Fire prevention
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Plastics materials are used in large volumes in major applications such as buildings, vehicles and electronic appliances. In each of these areas fire safety is critical. Hence flame retardants have been developed to improve the properties of plastics under the different conditions of processing and use. Flame retardants can act in a variety of ways: by raising the ignition temperature, reducing the rate of burning, reducing flame spread and reducing smoke generation. There are various test methods in use to quantify the effectiveness of different flame retardants and these are described here.
Market surveys. --- Fire resistant plastics. --- Plastics --- Plastic materials --- Plastic products --- Polymers --- Synthetic products --- Condensation products (Chemistry) --- Elastomers --- Plasticity --- Flame retardant plastics --- Fire resistant materials --- Fireproofing --- Retail trading areas --- Advertising --- Consumption (Economics) --- Economic surveys --- Marketing research --- Advertising campaigns --- Consumer behavior --- Public opinion polls --- Safety measures. --- Surveys --- Market surveys --- Fire resistant plastics --- Plastics - Safety measures
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Sustainable development has become a great concern in modern society. The authors of this brief describe how one strategy to reach this objective is to replace oil-based materials with bio-based materials. They emphasize the great efforts that have been made to synthesize new bio-based polymers or additives or to replace glass fibers by natural fibers in composites. Flame retardancy is one of the most desired properties for many applications in wires and cables, building, transport, electric and electronic devices. The authors of this fascinating and timely brief summarize this important field in three parts. The flame retardancy of biobased polymers, the flame retardancy of natural fibers composites, and the synthesis and efficiency of biobased flame retardants.
Materials science. --- Polymers. --- Chemical engineering. --- Sustainable development. --- Biomaterials. --- Materials Science. --- Polymer Sciences. --- Sustainable Development. --- Industrial Chemistry/Chemical Engineering. --- Fire resistant polymers. --- Fire retardant polymers --- Flame retardant polymers --- Fire resistant materials --- Polymers --- Chemistry, Industrial --- Engineering, Chemical --- Industrial chemistry --- Engineering --- Chemistry, Technical --- Metallurgy --- Development, Sustainable --- Ecologically sustainable development --- Economic development, Sustainable --- Economic sustainability --- ESD (Ecologically sustainable development) --- Smart growth --- Sustainable development --- Sustainable economic development --- Economic development --- Polymere --- Polymeride --- Polymers and polymerization --- Macromolecules --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Biomedical engineering --- Materials --- Biocompatibility --- Prosthesis --- Environmental aspects --- Polymers . --- Bioartificial materials --- Hemocompatible materials --- Biomaterials (Biomedical materials)
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