High performance polymers and their nanocomposites:
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Beverly, MA
Wiley Scrivener Publishing
[2019]
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | Includes bibliographical references |
Beschreibung: | xvii, 378 pages Diagramme |
ISBN: | 9781119363651 |
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adam_text | Contents Preface 1 High-Performance Polymer Nanocomposites and Their Applications: State of Art and New Challenges Visakh P.M. 1.1 Liquid Crystal Polymers 1.2 Polyamide 4, 6, (PA4,6) 1.3 Polyacrylamide 1.4 Effect of Nanostructured Polyhedral Oligomeric Silsesquioxone on High Performance Poly(urethane-Imide) 1.5 Thermoplastic Polyimide 1.6 Performance Properties and Applications of Polytetrafluoroethylene (PTFE) 1.7 Advances in High-Performance Polymers Bearing Phthalazinone Moieties 1.8 Poly(ethylene Terephthalate)—PET and Polyethylene Naphthalate)—PEN 1.9 High-Performance Oil Resistant Blends of Ethylene Propylene Diene Monomer (EPDM) and Epoxydized Natural Rubber (ENR) 1.10 High Performance Unsaturated Polyester/f-MWCNTs Nanocomposites Induced by F-Graphene Nanoplatelets References 2 Liquid Crystal Polymers Andreea Irina Barzic, Raluca Mariniča Albu and Luminiţa Ioana Buruiana 2.1 Introduction and History 2.2 Polymerization xiii 1 1 3 4 5 5 7 9 11 14 15 16 27 27 29
vi Contents 2.2.1 2.2.2 Synthesis of Lyotropic LC Polymers Synthesis of Thermotropic LC Polymers 2.3 Properties 2.3.1 Rheology 2.3.2 Dielectric Behavior 2.3.3 Magnetic Properties 2.3.4 Mechanical Properties 2.3.5 Phases and Morphology 2.4 Processing 2.4.1 Injection Molding 2.4.2 Extrusion 2.4.3 Free Surface Flow 2.4.4 LC Polymer Fiber Spinning 2.5 Blends Based on Liquid Crystal Polymers 2.6 Composites of Liquid Crystal Polymers 2.7 Applications 2.7.1 LC Polymers as Optoelectronic Materials 2.7.2 Liquid Crystalline Polymers in Displays 2.7.3 Sensors and Actuators 2.8 Environmental Impact and Recycling 2.9 Concluding Remarks and Future Trends Acknowledgment References Polyamide 4,6, (PA4,6) Emel Kuram and Zeynep Munteha Sahin 3.1 Introduction and History 3.2 Polymerization and Fabrication 3.3 Properties 3.4 Chemical Stability 3.5 Compounding and Special Additives 3.6 Processing 3.7 Applications 3.8 Blends of Polyamide 4,6, (PA4,6) 3.9 Composites of Polyamide 4,6, (PA4,6) 3.10 Nanocomposites of Polyamide 4,6, (PA4,6) 3.11 Environmental Impact and Recycling 3.12 Conclusions References 30 31 32 32 35 36 36 39 41 41 42 43 44 44 46 48 49 50 51 52 53 54 54 59 60 60 69 73 74 74 81 86 88 91 94 99 100
Contents 4 5 6 Polyacrylamide (PAM) vii 105 Małgorzata Wiśniewska 4.1 Introduction and History 4.2 Polymerization and Fabrication 4.3 Properties 4.4 Chemical Stability 4.5 Compounding and Special Additives 4.6 Processing 4.7 Applications 4.8 Blends of Polyacrylamide 4.9 Composites of Polyacrylamide 4.10 Nanocomposites of Polyacrylamide 4.11 Environmental Impact and Recycling 4.12 Conclusions References 105 107 110 111 112 113 114 116 118 119 120 122 123 Effect of Nanostructured Polyhedral Oligomeric Silsesquioxone on High Performance Poly(urethane-imide) 133 Dhorali Gnanasekaran 5.1 Introduction 5.2 Experimental 5.3 Results and Discussion 5.4 Conclusions References 134 136 138 146 146 Thermoplastic Polyimide (TPI) 149 Xiantao Feng and Jialei Liu 6.1 Introduction and History 6.2 Polymerization and Fabrication 6.2.1 Thermoplastic Polyimides Based on ВЕРА 6.2.2 Thermoplastic Polyimides Based on PMDA 6.2.3 Thermoplastic Polyimides Based on BTDA 6.2.4 Thermoplastic Polyimides Based on ODPA 6.2.5 Thermoplastic Polyimides Based on BPDA 6.2.6 Thermoplastic Copolyimides 6.3 Properties 6.3.1 TPI Based on ВЕРА 6.3.2 Thermoplastic Polyimides Based on PMDA 6.3.3 TPI Based on ODPA 6.3.4 Thermoplastic Polyimides Based on BPDA 149 150 150 153 154 157 157 158 160 160 163 163 168
viii Contents 6.3.5 Thermoplastic Copolyimides 6.4 Chemical Stability 6.4.1 Hydrolytic Stability 6.4.2 Oxidative Stability 6.5 Compounding 6.5.1 Chlorométhylation 6.5.2 Sulfonation 6.5.3 Phosphorylation 6.5.4 Bromination 6.5.5 Arylation 6.6 Processing 6.6.1 Injection Molding 6.6.2 Compression Molding 6.6.3 Extrusion Molding 6.6.4 Coating 6.6.5 Spinning 6.7 Applications 6.7.1 Membranes 6.7.2 Adhesives 6.7.3 Composites 6.7.3.1 Skybond 6.7.4 Engineering Plastics 6.7.4.1 VESPEL Plastics 6.7.4.2 ÜLTEM Plastics 6.7.4.3 AURUM Plastics Ó.7.4.4 Ratem Plastics 6.8 Blends of Thermoplastic Polyimide (TPI) 6.8.1 TPI Blends with TPI 6.8.2 Polyamic Acid Blending 6.9 Composites of Thermoplastic Polyimide (TPI) 6.9.1 LaRC Composites 6.9.2 Skybond 6.9.3 PAI Polyamide-Imide Composites 6.10 Nanocomposites of Thermoplastic Polyimide (TPI) 6.10.1 TPI/silver Nanocomposite 6.10.2 TPI/Fe-FeO Nanocomposite 6.10.3 TPI/Carbon Nanocomposites 6.10.4 TPI/CF/Ti02 Nanocomposite 6.11 Environmental Impact and Recycling 6.12 Conclusions References 170 170 170 174 175 175 178 178 178 181 181 181 182 184 184 186 186 186 188 189 190 190 190 191 192 192 193 193 195 196 197 202 205 208 208 210 211 214 214 215 215
Contents 7 Advances in High-Performance Polymers Bearing Phthalazinone Moieties Jinyan Wang, Cheng Liu, Shouhai Zhang and Xigao Jian 7.1 Introduction 7.2 A New Mmonomer: 1,2-Dihydro-4-(4-Hydroxyphenyl)-l-(2H)-Phthalazinone 7.3 Synthesis and Properties of Phthalazinone-Containing Poly(aryl ether)s 7.3.1 Poly(phthalazinone ether sulfone ketone)s (PPESKs) 7.3.2 Poly(phthalazinone ether ketone ketone) (PPEKK) and Its Copolymers 7.3.3 Poly(phthalazinone ether nitrile sulfone ketone)s (PPENSKs) 7.3.4 Polyarylether) Containing Aryl-S-triazine and Phthalazinone Moieties 7.4 Polyamides and Polyimides Containing Phthalazinone Moieties 7.5 Phthalazinone-Containing Polyarylates 7.6 Phthalazinone-Containing Polybenzimidazole 7.7 Conclusions and Prospects Acknowledgments References 8 Polyethylene terephthalate)—PET and Polyethylene naphthalate)—PEN Luigi Sorrentino, Marco D’Auria and Eugenio Amendola 8.1 Introduction 8.2 Synthesis of PET and PEN 8.2.1 PET Production 8.3 Processing of Neat Polymers 8.3.1 Materials Feeding 8.3.2 Melting and Compounding 8.3.3 Venting 8.3.4 Metering 8.3.5 Temperature Managing 8.3.6 Die Forming and Post-Die Treatments 8.3.7 Tandem Extruders Configuration 8.4 Nanocomposites ix 221 222 222 225 225 228 229 233 239 245 246 248 248 249 255 256 258 266 267 269 270 270 270 271 271 271 272
x Contents 8.4.1 Isodimensional Nanoparticles 8.4.2 Clay Nanoparticles 8.4.3 Carbon-Based Nanoparticles Nanocomposites Production Processes 8.5.1 In Situ Polymerization 8.5.2 Solution Intercalation (Or Solution Blending) 8.5.3 Direct Mixing 8.5.4 Melt Compounding (High Shear Mixing) 8.5.5 Three Roll Milling 8.5.6 Dispersion Aids (Ultrasounds) 8.5.7 Solid-State Shear Processing 8.5.8 Combined Approaches Structural and Functional Properties 8.6.1 Mechanical Behavior 8.6.2 Thermal Resistance 8.6.3 Transport Properties 8.6.4 Electrical Conductivity 8.6.5 Rheological Properties References 9 High-Performance Oil/Fuel-Resistant Blends of Ethylene Propylene Diene Monomer (EPDM) and Epoxidized Natural Rubber (ENR) D.K. 9.1 9.2 9.3 Setua and G.B. Nando Introduction Experimental Result and Discussion 9.3.1 Optimization of Curing System for the ENR/EPDM Blends 9.3.2 Optimization of Blend Ratio for the ENR/EPDM Blends 9.3.3 Optimization of MAH Concentration for Maléation of EPDM 9.3.4 Characterization of ENR-MA-G-EPDM Blends 9.3.5 Optimization of Processing Temperature for ENR-MA-G-EPDM Blends 9.3.6 Compatibility Characteristics of ENR-MA-G-EPDM Blends 9.3.6.1 Ultrasonic Velocity Measurements in Solution 273 275 278 279 280 282 283 284 287 287 289 289 289 290 295 296 298 301 304 315 316 319 322 322 323 326 328 329 330 330
Contents 9.3.6.2 9.3.6.3 Thermomechanical Analysis (TMA) Scanning Electron Microscopy (SEM) Studies 9.3.7 Evaluation of the Mechanical Properties of Individual Rubbers and Blends 9.3.7.1 Stress-Strain Properties 9.3.7.2 Determination of Hardness 9.3.7.3 Oil/Fuel Swelling Studies 9.3.7.4 Aging Studies 9.3.7.5 Thermogravimetric Analysis (TGA) 9.3.8 Effect of Addition of Carbon Black in ENR/MA-G-EPDM Blend 9.4 Summary and Conclusions Acknowledgement References 10 High-Performance Unsaturated Polyester/f-MWCNTs Nanocomposites Induced by f-Graphene Nanoplatelets Shivkumari Panda, Dibakar Behera, Tapan Kumar Bastia and Prašant Rath 10.1 Introduction and History 10.1.1 Polymerization 10.1.2 Fabrication 10.1.2.1 Hand Lay-Up 10.1.2.2 Spray Lay-Up 10.1.2.3 Compression Molding 10.1.2.4 Filament Winding 10.1.3 Chemical Stability of UPE 10.1.4 Compounding and Special Additives 10.1.5 Applications 10.2 Nanocomposites of UPE 10.2.1 Experimental Details 10.2.1.1 Materials 10.2.1.2 Methods 10.2.2 Instruments and Measurements 10.2.2.1 Fourier Transform Infrared (FTIR) Spectroscopy 10.2.2.2 Scanning Electron Microscopy (SEM) xi 332 332 335 335 336 337 342 342 343 344 344 344 347 348 348 349 349 351 351 352 352 352 355 356 357 357 357 359 359 359
xii Contents 10.2.2.3 Transmission Electron Microscope (ТЕМ) 10.2.2.4 Contact Angle Determination 10.2.2.5 Dynamic Mechanical Analysis 10.2.2.6 Impact Testing 10.2.2.7 Water Absorption Capacity Determination 10.2.3Results and Discussion 10.2.3.1 FTIR Analysis 10.2.3.2 SEM Analysis 10.2.3.3 ТЕМ Analysis 10.2.3.4 Contact Angle 10.2.3.5 Thermomechanical Properties of UPE/Single Filler and UPE/Hybrid Filler Nanocomposites 10.2.3.6 Water Absorption Capacity Conclusion and Future Challenges References Index 360 360 360 360 360 360 360 362 364 365 366 368 369 370 373
High performance polymer materials have excellent outcomes at high temperatures because of their properties and are indispensable in aerospace, electronics, electrical engineering, high-speed rail, and other important high-tech fields. High Performance Polymers and Their Nanocomposites reviews the recent research accomplishments with regard to their synthesis and preparation, structure, properties and applications. Among the many topics discussed are liquid crystal polymers, polyamide 4,6 and polyacrylamide and the influence of nanostructured multifunctional polyhedral oligomeric silsesquioxane on surface morphology. Also discussed are thermoplastic polyimide and polytetrafluoroethylene’s performance properties and applications. A review of polymers containing phthalazinone moieties is presented along with a discussion of polyethylene terephthalate) and polyethylene naphthalate) polyesters; high-performance oil-resistant blends of ethylene propylenevdiene monomer and epoxidized natural rubber; and unsaturated polyester nanocomposites reinforced with functionalized nanofillers. The chapters in this book have been written by prominent researchers from industry, academia, and government/private research laboratories across the globe, making it an up-to-date record on the major findings and observations in the field. Audience This book will be a very valuable reference source for polymer and materials scientists, researchers and engineers in R D laboratories, academia and industry working in the area of high-performance polymers. Post-doctoral research fellows and graduate stu
dents will benefit from this book as well. Visakh P.M. (MSc, MPhil, PhD) is a prolific editor with more than 25 books already published. He is working as an Assistant Professor in Tusur University, Tomsk, Russia. He obtained his PhD, MPhil and MSc degrees from the School of Chemical Sciences, Mahatma Gandhi University, Kottayam, Kerala, India. He has an h-index of 14 for his journal publications. His research interests include polymer sciences, polymer nanocomposites, bio-nanocomposites, rubber-based nanocomposites and fire-retardant polymers. Artem Semkin is currently working as a scientist in the Department of Microwave and Quantum Radio Engineering, Tomsk State University of Control Systems and Radioelectronics, Tomsk, Russia. He obtained his PhD from Tomsk State University of Control Systems and Radioelectronics and has published more than 80 publications with an h-index of 6. His areas of research include polymer sciences, photopolymers, liquid crystals, photopolymeric and liquid crystalline compositions. Cover design by Russell Richardson. Front cover image provided by pixabay.com. ISBN 978-1-119-36365-1 9781119363651 Wiley 7 ЗІ Also available as an e-book www.wiley.comwww.scrivenerpublishing.com 9 781119 363651
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spelling | High performance polymers and their nanocomposites edited by Visakh P.M. and Semkin A.O. Beverly, MA Wiley Scrivener Publishing [2019] xvii, 378 pages Diagramme txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references Polymers Polymeric composites Polymere (DE-588)4046699-1 gnd rswk-swf Nanokomposit (DE-588)4768127-5 gnd rswk-swf Polymere (DE-588)4046699-1 s Nanokomposit (DE-588)4768127-5 s DE-604 P. M., Visakh 1984- (DE-588)1081104791 edt Erscheint auch als Online-Ausgabe High performance polymers and their nanocomposites Hoboken, NJ : Wiley-Scrivener, 2018 9781119363811 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=031267363&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=031267363&sequence=000003&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext |
spellingShingle | High performance polymers and their nanocomposites Polymers Polymeric composites Polymere (DE-588)4046699-1 gnd Nanokomposit (DE-588)4768127-5 gnd |
subject_GND | (DE-588)4046699-1 (DE-588)4768127-5 |
title | High performance polymers and their nanocomposites |
title_auth | High performance polymers and their nanocomposites |
title_exact_search | High performance polymers and their nanocomposites |
title_full | High performance polymers and their nanocomposites edited by Visakh P.M. and Semkin A.O. |
title_fullStr | High performance polymers and their nanocomposites edited by Visakh P.M. and Semkin A.O. |
title_full_unstemmed | High performance polymers and their nanocomposites edited by Visakh P.M. and Semkin A.O. |
title_short | High performance polymers and their nanocomposites |
title_sort | high performance polymers and their nanocomposites |
topic | Polymers Polymeric composites Polymere (DE-588)4046699-1 gnd Nanokomposit (DE-588)4768127-5 gnd |
topic_facet | Polymers Polymeric composites Polymere Nanokomposit |
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