Clay-containing polymeric nanocomposites.: Volume 2 /
Nanocomposites are being described as the ultimate in new materials this decade. They offer potentially outstanding material performance. Clay-containing polymeric nanocomposites have now reached a commercially viable stage and are being incorporated in many new applications. It is essential that ma...
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Shrewsbury :
Rapra Technology Ltd.,
2004.
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Zusammenfassung: | Nanocomposites are being described as the ultimate in new materials this decade. They offer potentially outstanding material performance. Clay-containing polymeric nanocomposites have now reached a commercially viable stage and are being incorporated in many new applications. It is essential that material suppliers, designers and manufacturers understand the potential and the limitations of these new products. This book is an encyclopaedic compilation of the material published to date in this exciting new field of polymer science. It describes patents, journal and conference articles and the practical experience of the author in developing and working with these new materials. All of this information is compiled in useful sections by material, processing, properties and applications. It also includes useful commercial information, such as the names of the companies who are researching and producing nanocomposites. This monograph starts with a very useful section on the different types of nanoparticles currently available. It gives details of the geometry of these particles and describes the experimental work on incorporating these particles into polymeric matrices. Clays are at by far the most advanced stages of development. There are further sections containing detailed theory of the incorporation of particles of different shapes and sizes into polymeric matrices and on how property changes may be brought about by nanoparticles. Clay has the advantage that it is a relatively cheap and abundant material. However, it is also very varied in form and chemistry: impurities can lead to degradation of nanocomposites; different types of clay will be less compatible with different types of polymer. Work has been carried out on all of these issues to look for the best clay and compatibilisers for each polymer type. This is just the start of the development process as the clay has to be dispersed to the nano-level in the matrix, involving intercalation and exfoliation. This is described in detail here together with the chemistry of the processes used. Synthetic clays are also being developed. Production methods for nanocomposites are described, for example clay can be dispersed in a melt or monomers can be mixed in and then polymerised. Most of the research to date has been carried out on thermoplastics with some on thermosets and a limited amount on elastomers. Toyota and Allied-Signal have worked on polyamides, for example, whilst Dow, Sekisui Chemical and Toyota have all taken out patents relating to polyolefins. Rheology has also been studied in depth. There is extensive data in this text including numerous tables and graphs illustrating property changes, processing attributes, chemical interactions, material types and so forth. This is a very comprehensive book and represents the forefront of the technology of Clay-Containing Polymeric Nanocomposites. |
Beschreibung: | 1 online resource (1 volume) : illustrations |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9781847351838 1847351832 1281775436 9781281775436 |
Internformat
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520 | |a Nanocomposites are being described as the ultimate in new materials this decade. They offer potentially outstanding material performance. Clay-containing polymeric nanocomposites have now reached a commercially viable stage and are being incorporated in many new applications. It is essential that material suppliers, designers and manufacturers understand the potential and the limitations of these new products. This book is an encyclopaedic compilation of the material published to date in this exciting new field of polymer science. It describes patents, journal and conference articles and the practical experience of the author in developing and working with these new materials. All of this information is compiled in useful sections by material, processing, properties and applications. It also includes useful commercial information, such as the names of the companies who are researching and producing nanocomposites. This monograph starts with a very useful section on the different types of nanoparticles currently available. It gives details of the geometry of these particles and describes the experimental work on incorporating these particles into polymeric matrices. Clays are at by far the most advanced stages of development. There are further sections containing detailed theory of the incorporation of particles of different shapes and sizes into polymeric matrices and on how property changes may be brought about by nanoparticles. Clay has the advantage that it is a relatively cheap and abundant material. However, it is also very varied in form and chemistry: impurities can lead to degradation of nanocomposites; different types of clay will be less compatible with different types of polymer. Work has been carried out on all of these issues to look for the best clay and compatibilisers for each polymer type. This is just the start of the development process as the clay has to be dispersed to the nano-level in the matrix, involving intercalation and exfoliation. This is described in detail here together with the chemistry of the processes used. Synthetic clays are also being developed. Production methods for nanocomposites are described, for example clay can be dispersed in a melt or monomers can be mixed in and then polymerised. Most of the research to date has been carried out on thermoplastics with some on thermosets and a limited amount on elastomers. Toyota and Allied-Signal have worked on polyamides, for example, whilst Dow, Sekisui Chemical and Toyota have all taken out patents relating to polyolefins. Rheology has also been studied in depth. There is extensive data in this text including numerous tables and graphs illustrating property changes, processing attributes, chemical interactions, material types and so forth. This is a very comprehensive book and represents the forefront of the technology of Clay-Containing Polymeric Nanocomposites. | ||
505 | 0 | |a Contents Volume 1 -- Contents Volume 2 -- 4 Technology of Clay-Containing Polymeric Nanocomposites -- 4.1 Thermoplastic CPNC -- 4.2 Thermoset CPNC -- 4.3 Elastomeric CPNC -- 5 Performance -- 6 Closing Remarks -- 7 Appendices -- 7.1 General and Chemical Abbreviations -- 7.2 International Abbreviations for Polymers -- 7.3 Abbreviations for Organic Cations Used as Clay Intercalants -- 7.4 Notations -- 7.5 Dictionary -- 7.6 Companies Active in Organoclay, and/or CPNC Technology -- 8 References -- 9 Index | |
650 | 0 | |a Clay. |0 http://id.loc.gov/authorities/subjects/sh85026864 | |
650 | 0 | |a Nanostructured materials. |0 http://id.loc.gov/authorities/subjects/sh93000864 | |
650 | 0 | |a Polymeric composites. |0 http://id.loc.gov/authorities/subjects/sh85104659 | |
650 | 2 | |a Nanostructures |0 https://id.nlm.nih.gov/mesh/D049329 | |
650 | 6 | |a Argile. | |
650 | 6 | |a Nanomatériaux. | |
650 | 6 | |a Composites polymères. | |
650 | 7 | |a clay. |2 aat | |
650 | 7 | |a TECHNOLOGY & ENGINEERING |x Material Science. |2 bisacsh | |
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author | Utracki, L. A., 1931- |
author_GND | http://id.loc.gov/authorities/names/n88252259 |
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author_corporate_role | |
author_facet | Utracki, L. A., 1931- Rapra Technology Limited |
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collection | ZDB-4-EBA |
contents | Contents Volume 1 -- Contents Volume 2 -- 4 Technology of Clay-Containing Polymeric Nanocomposites -- 4.1 Thermoplastic CPNC -- 4.2 Thermoset CPNC -- 4.3 Elastomeric CPNC -- 5 Performance -- 6 Closing Remarks -- 7 Appendices -- 7.1 General and Chemical Abbreviations -- 7.2 International Abbreviations for Polymers -- 7.3 Abbreviations for Organic Cations Used as Clay Intercalants -- 7.4 Notations -- 7.5 Dictionary -- 7.6 Companies Active in Organoclay, and/or CPNC Technology -- 8 References -- 9 Index |
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publisher | Rapra Technology Ltd., |
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spelling | Utracki, L. A., 1931- https://id.oclc.org/worldcat/entity/E39PBJv4jv4rcRv6PyqTCG89jC http://id.loc.gov/authorities/names/n88252259 Clay-containing polymeric nanocomposites. Volume 2 / L.A. Utracki. Shrewsbury : Rapra Technology Ltd., 2004. 1 online resource (1 volume) : illustrations text txt rdacontent computer c rdamedia online resource cr rdacarrier Includes bibliographical references and index. Print version record. Nanocomposites are being described as the ultimate in new materials this decade. They offer potentially outstanding material performance. Clay-containing polymeric nanocomposites have now reached a commercially viable stage and are being incorporated in many new applications. It is essential that material suppliers, designers and manufacturers understand the potential and the limitations of these new products. This book is an encyclopaedic compilation of the material published to date in this exciting new field of polymer science. It describes patents, journal and conference articles and the practical experience of the author in developing and working with these new materials. All of this information is compiled in useful sections by material, processing, properties and applications. It also includes useful commercial information, such as the names of the companies who are researching and producing nanocomposites. This monograph starts with a very useful section on the different types of nanoparticles currently available. It gives details of the geometry of these particles and describes the experimental work on incorporating these particles into polymeric matrices. Clays are at by far the most advanced stages of development. There are further sections containing detailed theory of the incorporation of particles of different shapes and sizes into polymeric matrices and on how property changes may be brought about by nanoparticles. Clay has the advantage that it is a relatively cheap and abundant material. However, it is also very varied in form and chemistry: impurities can lead to degradation of nanocomposites; different types of clay will be less compatible with different types of polymer. Work has been carried out on all of these issues to look for the best clay and compatibilisers for each polymer type. This is just the start of the development process as the clay has to be dispersed to the nano-level in the matrix, involving intercalation and exfoliation. This is described in detail here together with the chemistry of the processes used. Synthetic clays are also being developed. Production methods for nanocomposites are described, for example clay can be dispersed in a melt or monomers can be mixed in and then polymerised. Most of the research to date has been carried out on thermoplastics with some on thermosets and a limited amount on elastomers. Toyota and Allied-Signal have worked on polyamides, for example, whilst Dow, Sekisui Chemical and Toyota have all taken out patents relating to polyolefins. Rheology has also been studied in depth. There is extensive data in this text including numerous tables and graphs illustrating property changes, processing attributes, chemical interactions, material types and so forth. This is a very comprehensive book and represents the forefront of the technology of Clay-Containing Polymeric Nanocomposites. Contents Volume 1 -- Contents Volume 2 -- 4 Technology of Clay-Containing Polymeric Nanocomposites -- 4.1 Thermoplastic CPNC -- 4.2 Thermoset CPNC -- 4.3 Elastomeric CPNC -- 5 Performance -- 6 Closing Remarks -- 7 Appendices -- 7.1 General and Chemical Abbreviations -- 7.2 International Abbreviations for Polymers -- 7.3 Abbreviations for Organic Cations Used as Clay Intercalants -- 7.4 Notations -- 7.5 Dictionary -- 7.6 Companies Active in Organoclay, and/or CPNC Technology -- 8 References -- 9 Index Clay. http://id.loc.gov/authorities/subjects/sh85026864 Nanostructured materials. http://id.loc.gov/authorities/subjects/sh93000864 Polymeric composites. http://id.loc.gov/authorities/subjects/sh85104659 Nanostructures https://id.nlm.nih.gov/mesh/D049329 Argile. Nanomatériaux. Composites polymères. clay. aat TECHNOLOGY & ENGINEERING Material Science. bisacsh Clay fast Nanostructured materials fast Polymeric composites fast Rapra Technology Limited. http://id.loc.gov/authorities/names/n85003082 has work: Clay-containing polymeric nanocomposites (Text) https://id.oclc.org/worldcat/entity/E39PCGQqkPTHKGtwjMwcRPwvh3 https://id.oclc.org/worldcat/ontology/hasWork Print version: Utracki, L.A., 1931- Clay-containing polymeric nanocomposites. Volume 2. Shrewsbury : Rapra Technology Ltd., 2004 1859574823 9781859574829 (DLC) 2005432953 (OCoLC)57007433 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=235257 Volltext |
spellingShingle | Utracki, L. A., 1931- Clay-containing polymeric nanocomposites. Contents Volume 1 -- Contents Volume 2 -- 4 Technology of Clay-Containing Polymeric Nanocomposites -- 4.1 Thermoplastic CPNC -- 4.2 Thermoset CPNC -- 4.3 Elastomeric CPNC -- 5 Performance -- 6 Closing Remarks -- 7 Appendices -- 7.1 General and Chemical Abbreviations -- 7.2 International Abbreviations for Polymers -- 7.3 Abbreviations for Organic Cations Used as Clay Intercalants -- 7.4 Notations -- 7.5 Dictionary -- 7.6 Companies Active in Organoclay, and/or CPNC Technology -- 8 References -- 9 Index Clay. http://id.loc.gov/authorities/subjects/sh85026864 Nanostructured materials. http://id.loc.gov/authorities/subjects/sh93000864 Polymeric composites. http://id.loc.gov/authorities/subjects/sh85104659 Nanostructures https://id.nlm.nih.gov/mesh/D049329 Argile. Nanomatériaux. Composites polymères. clay. aat TECHNOLOGY & ENGINEERING Material Science. bisacsh Clay fast Nanostructured materials fast Polymeric composites fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh85026864 http://id.loc.gov/authorities/subjects/sh93000864 http://id.loc.gov/authorities/subjects/sh85104659 https://id.nlm.nih.gov/mesh/D049329 |
title | Clay-containing polymeric nanocomposites. |
title_auth | Clay-containing polymeric nanocomposites. |
title_exact_search | Clay-containing polymeric nanocomposites. |
title_full | Clay-containing polymeric nanocomposites. Volume 2 / L.A. Utracki. |
title_fullStr | Clay-containing polymeric nanocomposites. Volume 2 / L.A. Utracki. |
title_full_unstemmed | Clay-containing polymeric nanocomposites. Volume 2 / L.A. Utracki. |
title_short | Clay-containing polymeric nanocomposites. |
title_sort | clay containing polymeric nanocomposites |
topic | Clay. http://id.loc.gov/authorities/subjects/sh85026864 Nanostructured materials. http://id.loc.gov/authorities/subjects/sh93000864 Polymeric composites. http://id.loc.gov/authorities/subjects/sh85104659 Nanostructures https://id.nlm.nih.gov/mesh/D049329 Argile. Nanomatériaux. Composites polymères. clay. aat TECHNOLOGY & ENGINEERING Material Science. bisacsh Clay fast Nanostructured materials fast Polymeric composites fast |
topic_facet | Clay. Nanostructured materials. Polymeric composites. Nanostructures Argile. Nanomatériaux. Composites polymères. clay. TECHNOLOGY & ENGINEERING Material Science. Clay Nanostructured materials Polymeric composites |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=235257 |
work_keys_str_mv | AT utrackila claycontainingpolymericnanocompositesvolume2 AT rapratechnologylimited claycontainingpolymericnanocompositesvolume2 |