Fire retardancy of polymers : new applications of mineral fillers, edited by Michel Le Bras [and others]
Resource Information
The instance Fire retardancy of polymers : new applications of mineral fillers, edited by Michel Le Bras [and others] represents a material embodiment of a distinct intellectual or artistic creation found in University of Missouri-St. Louis Libraries. This resource is a combination of several types including: Instance, Electronic.
The Resource
Fire retardancy of polymers : new applications of mineral fillers, edited by Michel Le Bras [and others]
Resource Information
The instance Fire retardancy of polymers : new applications of mineral fillers, edited by Michel Le Bras [and others] represents a material embodiment of a distinct intellectual or artistic creation found in University of Missouri-St. Louis Libraries. This resource is a combination of several types including: Instance, Electronic.
- Label
- Fire retardancy of polymers : new applications of mineral fillers, edited by Michel Le Bras [and others]
- Title remainder
- new applications of mineral fillers
- Statement of responsibility
- edited by Michel Le Bras [and others]
- Note
- "Most of the papers have been presented at the 9th European Meeting on Fire Retardancy and Protection of Materials (FRPM'03) ... at the University of Lille (France) on the 15-17th September 2003"--Title page verso
- Bibliography note
- Includes bibliographical references and index
- Carrier category
- online resource
- Carrier category code
-
- cr
- Carrier MARC source
- rdacarrier
- Color
- multicolored
- Content category
- text
- Content type code
-
- txt
- Content type MARC source
- rdacontent
- Contents
- General considerations on the use of fillers and nanocomposites : an introduction to the use of fillers and nanocomposites in fire retardancy -- Micro-sized fire retardant fillers : fire retardant fillers for polymers -- Lamellar double hydroxides/polymer composites : a new class of fire retardant materials -- Effect of a small amount of flame retardant on the combustion of PC, PBT and PET -- Intumescent silicates : synthesis, characterization and fire protective effect -- Use of nanocomposite materials : flammability of nanocomposites : effects of the shape of nanoparticles -- Thermal degradation and combustibility of polypropylene filled with magnesium hydroxide micro-filler and polypropylene nano-filled aluminosilicate composite -- Effect of the processing conditions on the fire retardant and thermomechanical properties of PP-clay nanocomposites -- Fire retardancy of polystyrene-hectorite nanocomposites -- Pyrolysis and flammability of polyurethane-organophilic clay nanocomposite -- Thermal degradation behaviour of flame-retardant unsaturated polyester resins incorporating functionalised nanoclays -- Comparative study of nanoeffect on fire retardancy of polymer-graphite oxide nanocomposites -- Styrene-acrylonitrile copolymer montmorillonite nanocomposite : processing, characterization and flammability -- Micro-sized fire retarding mineral fillers : polyhedral oligomeric silsesquioxanes : application to flame retardant textiles -- Octaisobutyl POSS thermal degradation -- Mineral fillers in synergistic systems. Interactions between nanoclays and flame retardant additives in polyamide 6 and polyamide 6.6 films -- Use of clay-nanocomposite matrixes in fire retardant polyolefin-based intumescent systems -- Effect of hydroxides on fire retardance mechanism of intumescent eva composition -- Barrier effects for the fire retardancy of polymers -- Plasma assisted process for fire properties improvement of polyamide and clay nanocomposite reinforced polyamide : a scale-up study -- Fire retardant polypropylene / flax blends: use of hydroxides -- Intumescence in ethylene-vinyl acetate copolymer filled with magnesium hydroxide and organoclays -- Spent oil refinery catalyst : a synergistic agent in intumescent formulations for polyethylenic materials -- Zinc borates as synergists for flame retarded polymers -- Fire retardancy of engineering polymer composites -- Flame retardant mechanisms facilitating safety in transportation -- Effect of the addition of mineral fillers and additives on the toxicity of fire effluents from polymers : comparison of the degradation products of polyurethane and polyurethane-organophilic clay nanocomposite : a toxicological approach -- Mechanisms of smoke and CO suppression from EVA composites -- Products of incomplete combustion from fire studies in the Purser furnace -- Improved and cost-efficient brominated fire retardant systems for plastics and textiles by reducing or eliminating antimony trioxide
- Control code
- 232637852
- Dimensions
- unknown
- Extent
- 1 online resource (xxiii, 416 pages)
- Form of item
- online
- Isbn
- 9781847552396
- Media category
- computer
- Media MARC source
- rdamedia
- Media type code
-
- c
- Other physical details
- illustrations
- http://library.link/vocab/ext/overdrive/overdriveId
- 10.1039/9781847552396
- Record ID
- .b131205766
- Reproduction note
- Electronic reproduction.
- Specific material designation
- remote
- System control number
- (OCoLC)232637852
- System details
- Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002.
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<div class="citation" vocab="http://schema.org/"><i class="fa fa-external-link-square fa-fw"></i> Data from <span resource="http://link.umsl.edu/resource/3kZxLrc8_U8/" typeof="Book http://bibfra.me/vocab/lite/Instance"><span property="name http://bibfra.me/vocab/lite/label"><a href="http://link.umsl.edu/resource/3kZxLrc8_U8/">Fire retardancy of polymers : new applications of mineral fillers, edited by Michel Le Bras [and others]</a></span> - <span property="potentialAction" typeOf="OrganizeAction"><span property="agent" typeof="LibrarySystem http://library.link/vocab/LibrarySystem" resource="http://link.umsl.edu/"><span property="name http://bibfra.me/vocab/lite/label"><a property="url" href="http://link.umsl.edu/">University of Missouri-St. Louis Libraries</a></span></span></span></span></div>