High-Performance Elastomeric Materials Reinforced by Nano-Carbons: Multifunctional Properties and Industrial Applications
Editat de Luca Valentini, Miguel Angel Lopez Manchadoen Limba Engleză Paperback – 21 aug 2019
- Enables the reader to understand the latest advanced applications of high-performance elastomers reinforced by nano-carbons
- Unlocks the door to essential properties for harsh environments, such as thermal conductivity, oil resistance, permeability, de-icing, and cracking resistance
- Covers the processability of elastomers reinforced by nano-carbons, including extrusion, compression, molding methods and techniques
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Specificații
ISBN-13: 9780128161982
ISBN-10: 0128161981
Pagini: 274
Dimensiuni: 152 x 229 mm
Greutate: 0.37 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128161981
Pagini: 274
Dimensiuni: 152 x 229 mm
Greutate: 0.37 kg
Editura: ELSEVIER SCIENCE
Public țintă
Academia: Researchers, scientists and postgraduate students working on elastomeric materials or rubber nanocomposites, as well as in the broader fields of Materials Science, Polymer Chemistry, Polymer Physics, and Chemical Engineering.Industry: Engineers, technologists and research scientists working with elastomers and high-performance elastomeric materials for product design and manufactureCuprins
Section 1. Materials 1. Classification of rubbers and components for harsh environmental systems 2. Classifications of nano-carbons and their peculiar characteristics for improving rubber properties in harsh environment 3. Functionalization methods of CNTs and GNPs for rubber systems
Section 2. Processing 4. Dispersion methods of CNTs and GNPs in elastomeric matrices, synergy and standard characterization methods 5. Compression moulding technology of rubber nanocomposites: the state of the art 6. Extrusion and injection moulding manufacturing processes of rubber nanocomposites: critical aspects and perspectives
Section 3. Properties 7. Mechanics of rubber nanocomposites 8. Thermal, electrical, and sensing properties of rubber nanocomposites 9. Testing of rubber nanocomposites for aerospace, automotive, and oil and gas applications 10. Analytical and numerical modelling of nanocomposites
Section 4. Smart Aspects 11. Electrically conductive rubbers 12. End of life
Section 2. Processing 4. Dispersion methods of CNTs and GNPs in elastomeric matrices, synergy and standard characterization methods 5. Compression moulding technology of rubber nanocomposites: the state of the art 6. Extrusion and injection moulding manufacturing processes of rubber nanocomposites: critical aspects and perspectives
Section 3. Properties 7. Mechanics of rubber nanocomposites 8. Thermal, electrical, and sensing properties of rubber nanocomposites 9. Testing of rubber nanocomposites for aerospace, automotive, and oil and gas applications 10. Analytical and numerical modelling of nanocomposites
Section 4. Smart Aspects 11. Electrically conductive rubbers 12. End of life