Carbon Nanotube-Polymer Composites (ePub)
Manufacture, Properties, and Applications
(Sprache: Englisch)
The accessible compendium of polymers in carbon nanotubes
(CNTs)
Carbon nanotubes (CNTs)--extremely thin tubes only a few
nanometers in diameter but able to attain lengths thousands of
times greater--are prime candidates for use in the development
of...
(CNTs)
Carbon nanotubes (CNTs)--extremely thin tubes only a few
nanometers in diameter but able to attain lengths thousands of
times greater--are prime candidates for use in the development
of...
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The accessible compendium of polymers in carbon nanotubes
(CNTs)
Carbon nanotubes (CNTs)--extremely thin tubes only a few
nanometers in diameter but able to attain lengths thousands of
times greater--are prime candidates for use in the development
of polymer composite materials. Bringing together thousands of
disparate research works, Carbon Nanotube-Polymer Composites:
Manufacture, Properties, and Applications covers CNT-polymers from
synthesis to potential applications, presenting the basic science
and engineering of this dynamic and complex area in an accessible,
readable way.
Designed to be of use to polymer scientists, engineers,
chemists, physicists, and materials scientists, the book covers
carbon nanotube fundamentals to help polymer experts understand
CNTs, and polymer physics to help those in the CNT field, making it
an invaluable resource for anyone working with CNT-polymer
composites. Detailed chapters describe the mechanical, rheological,
electrical, and thermal properties of carbon nanotube-polymer
composites.
Including a glossary that defines key terms, Carbon
Nanotube-Polymer Composites is essential reading for anyone looking
to gain a fundamental understanding of CNTs and polymers, as well
as potential and current applications, including electronics
(shielding and transparent electrodes), flame retardants, and
electromechanics (sensors and actuators), and their challenges.
(CNTs)
Carbon nanotubes (CNTs)--extremely thin tubes only a few
nanometers in diameter but able to attain lengths thousands of
times greater--are prime candidates for use in the development
of polymer composite materials. Bringing together thousands of
disparate research works, Carbon Nanotube-Polymer Composites:
Manufacture, Properties, and Applications covers CNT-polymers from
synthesis to potential applications, presenting the basic science
and engineering of this dynamic and complex area in an accessible,
readable way.
Designed to be of use to polymer scientists, engineers,
chemists, physicists, and materials scientists, the book covers
carbon nanotube fundamentals to help polymer experts understand
CNTs, and polymer physics to help those in the CNT field, making it
an invaluable resource for anyone working with CNT-polymer
composites. Detailed chapters describe the mechanical, rheological,
electrical, and thermal properties of carbon nanotube-polymer
composites.
Including a glossary that defines key terms, Carbon
Nanotube-Polymer Composites is essential reading for anyone looking
to gain a fundamental understanding of CNTs and polymers, as well
as potential and current applications, including electronics
(shielding and transparent electrodes), flame retardants, and
electromechanics (sensors and actuators), and their challenges.
Inhaltsverzeichnis zu „Carbon Nanotube-Polymer Composites (ePub)“
Preface. 1. Introduction. 1.1 Similarities between polymers and nanotubes. 1.2 Organization of Book. 1.3 Why write this book? 1.4 References. 2. Carbon Nanotubes. 2.1 Overview. 2.2 Synthesis. 2.3 Purification. 2.4 Properties. 2.5 Chemistry. 2.6 Challenges. 2.7 References. 3. Dispersion, Orientation and Lengths of Carbon Nanotubes in Polymers. 3.1 Overview. 3.2 Dispersion Characterization. 3.3 Methods to Disperse Nanotubes into Low-Viscosity Liquids, Including Monomers. 3.4 Polymer-Nanotube Dispersions: Solution Methods. 3.5 Polymer-Nanotube Dispersions: Melt Mixing. 3.5 Polymer-Nanotube Dispersions: No Fluid Mixing. 3.6 Polymer-Nanotube Dispersions: Impregnation/Infusion. 3.7 Challenges. 3.8 References. 4. Effects of Carbon Nanotubes on Polymer Physics. 4.1 Overview. 4.2 Amorphous Polymers. 4.3 Semicrystalline Polymers. 4.4 Blends and Bock Copolymers. 4.5 Challenges. 4.6 References. 5. Mechanical and Rheological Properties. 5.1 Overview. 5.2 Rheological Properties (Measurement of Melt and Solution Properties). 5.3 Mechanical Properties (Measurement of Solid Properties). 5.4 Challenges. 5.5 References. 6. Electrical Properties. 6.1 Overview. 6.2 Mixed Composites. 6.3 Impregnated-Infused Composites. 6.4 Composites with Electrically Conducting Polymers. 6.5 Challenges. 6.6 References. 7. Thermal Conductivity. 7.1 Overview. 7.2 Interfacial Resistance and Thermal Conductivity. 7.3 Dispersion, Percolation and Thermal Conductivity. 7.4 Effects of Other Variables on Thermal Conductivity. 7.5 Challenges. 7.6 References. 8. Applications of Polymer-Nanotube Composites. 8.1 Overview. 8.2 Electrical Conductivity: EMI Shielding, ESD and Transparent Electrodes. 8.3 Thermal Properties: Flame Retardency. 8.4 Electromechanical Properties: Strain Sensing and Actuators. 8.5 Other Applications. 8.6 Challenges. 8.7 References. Glossary.
Autoren-Porträt von Brian P. Grady
BRIAN P. GRADY, PHD, is the holder of the Conoco Du Pont Professorship in the School of Chemical, Biological and Materials Engineering at the University of Oklahoma, as well as the Director of the Institute for Applied Surfactant Research. Dr. Grady has been extremely active in the Society of Plastics Engineers including serving as chair of the Engineering Properties and Structure Division and later as secretary of the Society, and is currently a member of the Executive Committee of the Society of Plastics Engineers.
Bibliographische Angaben
- Autor: Brian P. Grady
- 2011, 1. Auflage, 352 Seiten, Englisch
- Verlag: John Wiley & Sons
- ISBN-10: 1118084373
- ISBN-13: 9781118084373
- Erscheinungsdatum: 08.07.2011
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- Größe: 6.31 MB
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Sprache:
Englisch
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