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Beschreibung

Rheology and Processing of Polymer Nanocomposites examines the current state of the art and new challenges in the characterization of nanofiller/polymer interactions, nanofiller dispersion, distribution, filler-filler interactions and interfaces in polymer nanocomposites.

A one-stop reference resource for important research accomplishments in this area, it benefits academics, researchers, scientists, and engineers in the field of polymer nanocomposites in their daily work.

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Veröffentlichungsjahr: 2016

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Table of Contents

Cover

Title Page

Copyright

List of Contributors

Chapter 1: Materials for Polymer Nanocomposites

1.1 Introduction

1.2 Nanocomposite Framework

1.3 Recent Developments and Opportunities in the Area of Polymer Nanocomposites

1.4 Challenges in the Area of Polymer Nanocomposites

1.5 Relationships of Macroscopic Rheological Properties to Nanoscale Structural Variables

1.6 Conclusion

Acknowledgments

References

Chapter 2: Manufacturing Polymer Nanocomposites

2.1 Introduction

2.2 Nanofillers

2.3 Polymer Matrices

2.4 Preparation of Nanocomposites

2.5 Characterization

2.6 Conclusions

References

Chapter 3: Rheology and Processing of Polymer Nanocomposites: Theory, Practice, and New Challenges

3.1 Introduction

3.2 Viscoelasticity of Nanocomposites

3.3 Flow Properties of Nanocomposites

3.4 Theory and Modeling of Nanocomposites Rheology

3.5 Processing of Nanocomposites

3.6 Conclusion and Futures Challenges

Acknowledgments

References

Chapter 4: Mixing of Polymers Using the Elongational Flow Mixer (RMX®)

4.1 Introduction

4.2 Polymer Blends

4.3 Polymer Nanocomposites

4.4 Elongational Flow Mixer (RMX®)

4.5 RMX® Mixing of Polymer Blends

4.6 Mixing of Polymer Nanocomposites

4.7 Concluding Remarks

References

Chapter 5: Rheology and Processing of Polymer/Layered Silicate Nanocomposites

5.1 Introduction

5.2 Nanostructure Development

5.3 Novel Compounding Methods for Delamination of OMLFs

5.4 Nanostructure and Rheological Properties

5.5 Nanocomposite Foams

5.6 Future Prospects

References

Chapter 6: Processing and Rheological Behaviors of Cnt/Polymer Nanocomposites

6.1 Introduction

6.2 Processing Techniques of Polymer/CNT Nanocomposites

6.3 Rheological Properties of Polymer/Carbon Nanotube Composites

6.4 Summary

Acknowledgment

References

Chapter 7: Unusual Phase Separation in PS Rich Blends with PVME in Presence of MWNTs

7.1 Introduction

7.2 Experimental Methods

7.3 Theory Background

7.4 Results and Discussion

7.5 Conclusions

Acknowledgements

References

Chapter 8: Rheology and Processing of Polymer/POSS Nanocomposites

8.1 Introduction

8.2 Polyhedral Oligomeric Silsesquioxanes

8.3 Processing of Polymer/POSS Nanocomposites

8.4 Rheological Behavior of POSS-Based Polymer Nanocomposites

8.5 Conclusions

Acknowledgments

References

Chapter 9: Polymer and Composite Nanofiber: Electrospinning Parameters and Rheology Properties

9.1 Introduction

9.2 Electrospinning

9.3 Electrospinning Process Parameters

9.4 Polymer-Based Nanofiber and its Rheology

9.5 Nanofiber and its Polymer Composites

9.6 Conclusion

References

Chapter 10: Rheology and Processing of Inorganic Nanomaterials and Quantum Dots/Polymer Nanocomposites

10.1 Inorganic Nanoparticle Filled Polymer Nanocomposites

10.2 Fabrication of Inorganic Nanoparticle Filled Polymer Nanocomposites

10.3 Why Rheological Study is Important for Polymer Nanocomposites

10.4 Rheology of Quantum Dot Based Polymer Nanocomposites

10.5 Metal Oxide Nanoparticle-Based Polymer Nanocomposites

10.6 Conclusion

References

Chapter 11: Rheology and Processing of Laponite/Polymer Nanocomposites

11.1 Introduction

11.2 Rheology

11.3 Processing

11.4 Conclusions and Outlook

Acknowledgement

References

Chapter 12: Graphene-Based Nanocomposites: Mechanical, Thermal, Electrical, and Rheological Properties

12.1 Introduction

12.2 Graphene

12.3 The Use of Graphene in Nanocomposite Materials

12.4 Nanocomposite Characterization

12.5 Conclusion

12.6 Future Perspective

References

Chapter 13: Processing, Rheology, and Electrical Properties of Polymer/Nanocarbon Black Composites

13.1 Introduction

13.2 Experimental

13.3 Electrical Properties of Carbon Black Composites and Applications

13.4 Conclusion

References

Chapter 14: Rheology and Processing of Nanocellulose, Nanochitin, and Nanostarch/Polymer Bionanocomposites

14.1 Introduction

14.2 Biopolymers as Nanofillers for Polymer/Nanocomposites

14.3 Potential Applications of Polysaccharide Nanofillers/Polymer Nanocomposites

14.4 Conclusions and Future Perspectives

References

Chapter 15: Rheology And Processing of Nanoparticle Filled Polymer Blend Nanocomposites

15.1 Rheology of Polymer Blends

15.2 Effect of Nanoparticles on the Morphology of Polymer Blend

15.3 Rheology of Nanoparticles Filled Polymer Blend

15.4 Summary

References

Chapter 16: Rheology as a Tool for Studying in Situ Polymerized Carbon Nanotube Nanocomposites

16.1 Introduction

16.2 Basic Principles of Rheokinetics

16.3 Rheokinetics of in Situ Polymerization of Carbon Nanotube/Monomer Systems

16.4 Rheological Percolation Threshold of Carbon Nanotube-Based Nanocomposites

16.5 Concluding Remarks

References

Index

End User License Agreement

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Guide

Cover

Table of Contents

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