Thermoset Nanocomposites

  • Producent: VCH
  • Oprawa: Twarda
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Opis: Thermoset Nanocomposites

The book series "Polymer Nano-, Micro- and Macrocomposites" provides complete and comprehensive information on all important aspects of polymer composite research and development, including, but not limited to synthesis, filler modification, modeling, characterization as well as application and commercialization issues. Each book focuses on a particular topic and gives a balanced in-depth overview of the respective subfield of polymer composite science and its relation to industrial applications. With the books the readers obtain dedicated resources with information relevant to their research, thereby helping to save time and money. Thermoset polymers are a class of materials with many superior properties than thermoplastic materials. Nanocomposites with a large variety of thermoset polymers have been explored and vast knowledge on the synthesis methodologies as well as properties has been generated. The goal of the book is to assimilate these research findings on the many thermoset polymer based nanocomposites systems comprehensively so as to generate better insights into the design, performance and optimization of thermoset nanocomposites.Preface IX List of Contributors XI 1 Epoxy--Vermiculite Nanocomposites 1 Vikas Mittal 1.1 Introduction 1 1.2 Experimental 2 1.3 Results and Discussion 6 1.4 Conclusions 14 Acknowledgment 14 References 15 2 Polymer Nanocomposites with UV-Cured Epoxies 17 Roberta Bongiovanni, Muhammad Atif, and Marco Sangermano 2.1 Introduction 17 2.2 Photopolymerization of Epoxides 20 2.3 Limits in Curing Epoxy Composites by UV Irradiation 24 2.4 Top-Down UV-Cured Epoxy Nanocomposites 25 2.5 Bottom-Up UV-Cured Epoxy Nanocomposites 32 2.6 Conclusions 35 References 36 3 Infl uence of Organic Modifi cation and Polyurethane Structure on Clay Dispersion in Polyurethane--Clay Nanocomposites 39 Shroff R. Mallikarjuna and Swaminathan Sivaram 3.1 Polymer Nanocomposites: An Introduction 39 3.2 Polyurethane--Clay Nanocomposites 41 3.3 Influence of Organic Modification of Clay and Structure of PU on PU/Clay Nanocomposites Structure 43 3.4 Conclusions 58 Glossary 59 References 59 4 Thermal Properties of Formaldehyde-Based Thermoset Nanocomposites 69 Byung-Dae Park 4.1 Introduction 69 4.2 Theoretical Background of Thermal Kinetics 72 4.3 Thermal Properties of Nanocomposites 76 4.4 Mechanical Properties of the Nanocomposites 100 4.5 Summary 103 Acknowledgment 105 References 105 5 Mechanical Performance of Thermoset Clay Nanocomposites 109 Nourredine Ait Hocine, Said Seghar, Hanaya Hassan, and Said Azem 5.1 Introduction 109 5.2 Viscoelasticity Analysis: Dynamical Mechanical Thermal Analysis (DMTA) 111 5.3 Rigidity -- Young's Modulus 114 5.4 Strain at Break 118 5.5 Stress at Break -- Fracture Toughness 120 5.6 Conclusion 124 References 124 6 Unsaturated Polyester Resin Clay Hybrid Nanocomposites 129 Kanniyan Dinakaran, Subramani Deveraju, and Muthukaruppan Alagar 6.1 Introduction 129 6.2 Reinforced Unsaturated Polyester Composites 130 6.3 Clay Minerals 131 6.4 Mechanical and Thermal Properties of Clay--UP Nanocopomposites 135 6.5 Flame Retardance 141 6.6 Bio-Derived Unsaturated Polyester--Clay Nanocomposites 144 References 145 7 Hyperbranched Polymers as Clay Surface Modifi cations for Nanocomposites 147 Teresa Corrales, Fernando Catalina, Inigo Larraza, Gema Marcelo, and Concepcion Abrusci 7.1 Introduction 147 7.2 Hyperbranched Polymers for Antimicrobial Surface 149 7.3 Hyperbranched Polymers on Adsorbents for Cr(VI) Water Treatment 157 Acknowledgment 162 References 162 8 New Methods for the Preparation of Metal and Clay Thermoset Nanocomposites 165 Kubra Dog an Demir, Manolya Kukut, Mehmet Atilla Tasdelen, and Yusuf Yagci 8.1 Introduction 165 8.2 Thermoset Nanocomposites Based on Nanoclays 166 8.3 Thermoset Nanocomposites Based on Metal Nanoparticles 176 8.4 Concluding Remarks 184 References 185 9 Bio-Based Epoxy Resin/Clay Nanocomposites 189 Mitsuhiro Shibata 9.1 Introduction 189 9.2 Bio-Based Epoxy Resins and Hardeners 191 9.3 Bio-Based Epoxy Resins/Clay Nanocomposites 200 9.4 Conclusion 206 References 206 10 Electrical Properties and Electromagnetic Interference Shielding Response of Electrically Conducting Thermosetting Nanocomposites 211 Parveen Saini 10.1 Introduction 211 10.2 EMI Shield and Shielding Effectiveness 212 10.3 Conclusions 231 Acknowledgments 232 References 232 Index 239


Szczegóły: Thermoset Nanocomposites

Tytuł: Thermoset Nanocomposites
Producent: VCH
ISBN: 9783527333011
Rok produkcji: 2013
Ilość stron: 262
Oprawa: Twarda
Waga: 0.72 kg


Recenzje: Thermoset Nanocomposites

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Thermoset Nanocomposites

  • Producent: VCH
  • Oprawa: Twarda

The book series "Polymer Nano-, Micro- and Macrocomposites" provides complete and comprehensive information on all important aspects of polymer composite research and development, including, but not limited to synthesis, filler modification, modeling, characterization as well as application and commercialization issues. Each book focuses on a particular topic and gives a balanced in-depth overview of the respective subfield of polymer composite science and its relation to industrial applications. With the books the readers obtain dedicated resources with information relevant to their research, thereby helping to save time and money. Thermoset polymers are a class of materials with many superior properties than thermoplastic materials. Nanocomposites with a large variety of thermoset polymers have been explored and vast knowledge on the synthesis methodologies as well as properties has been generated. The goal of the book is to assimilate these research findings on the many thermoset polymer based nanocomposites systems comprehensively so as to generate better insights into the design, performance and optimization of thermoset nanocomposites.Preface IX List of Contributors XI 1 Epoxy--Vermiculite Nanocomposites 1 Vikas Mittal 1.1 Introduction 1 1.2 Experimental 2 1.3 Results and Discussion 6 1.4 Conclusions 14 Acknowledgment 14 References 15 2 Polymer Nanocomposites with UV-Cured Epoxies 17 Roberta Bongiovanni, Muhammad Atif, and Marco Sangermano 2.1 Introduction 17 2.2 Photopolymerization of Epoxides 20 2.3 Limits in Curing Epoxy Composites by UV Irradiation 24 2.4 Top-Down UV-Cured Epoxy Nanocomposites 25 2.5 Bottom-Up UV-Cured Epoxy Nanocomposites 32 2.6 Conclusions 35 References 36 3 Infl uence of Organic Modifi cation and Polyurethane Structure on Clay Dispersion in Polyurethane--Clay Nanocomposites 39 Shroff R. Mallikarjuna and Swaminathan Sivaram 3.1 Polymer Nanocomposites: An Introduction 39 3.2 Polyurethane--Clay Nanocomposites 41 3.3 Influence of Organic Modification of Clay and Structure of PU on PU/Clay Nanocomposites Structure 43 3.4 Conclusions 58 Glossary 59 References 59 4 Thermal Properties of Formaldehyde-Based Thermoset Nanocomposites 69 Byung-Dae Park 4.1 Introduction 69 4.2 Theoretical Background of Thermal Kinetics 72 4.3 Thermal Properties of Nanocomposites 76 4.4 Mechanical Properties of the Nanocomposites 100 4.5 Summary 103 Acknowledgment 105 References 105 5 Mechanical Performance of Thermoset Clay Nanocomposites 109 Nourredine Ait Hocine, Said Seghar, Hanaya Hassan, and Said Azem 5.1 Introduction 109 5.2 Viscoelasticity Analysis: Dynamical Mechanical Thermal Analysis (DMTA) 111 5.3 Rigidity -- Young's Modulus 114 5.4 Strain at Break 118 5.5 Stress at Break -- Fracture Toughness 120 5.6 Conclusion 124 References 124 6 Unsaturated Polyester Resin Clay Hybrid Nanocomposites 129 Kanniyan Dinakaran, Subramani Deveraju, and Muthukaruppan Alagar 6.1 Introduction 129 6.2 Reinforced Unsaturated Polyester Composites 130 6.3 Clay Minerals 131 6.4 Mechanical and Thermal Properties of Clay--UP Nanocopomposites 135 6.5 Flame Retardance 141 6.6 Bio-Derived Unsaturated Polyester--Clay Nanocomposites 144 References 145 7 Hyperbranched Polymers as Clay Surface Modifi cations for Nanocomposites 147 Teresa Corrales, Fernando Catalina, Inigo Larraza, Gema Marcelo, and Concepcion Abrusci 7.1 Introduction 147 7.2 Hyperbranched Polymers for Antimicrobial Surface 149 7.3 Hyperbranched Polymers on Adsorbents for Cr(VI) Water Treatment 157 Acknowledgment 162 References 162 8 New Methods for the Preparation of Metal and Clay Thermoset Nanocomposites 165 Kubra Dog an Demir, Manolya Kukut, Mehmet Atilla Tasdelen, and Yusuf Yagci 8.1 Introduction 165 8.2 Thermoset Nanocomposites Based on Nanoclays 166 8.3 Thermoset Nanocomposites Based on Metal Nanoparticles 176 8.4 Concluding Remarks 184 References 185 9 Bio-Based Epoxy Resin/Clay Nanocomposites 189 Mitsuhiro Shibata 9.1 Introduction 189 9.2 Bio-Based Epoxy Resins and Hardeners 191 9.3 Bio-Based Epoxy Resins/Clay Nanocomposites 200 9.4 Conclusion 206 References 206 10 Electrical Properties and Electromagnetic Interference Shielding Response of Electrically Conducting Thermosetting Nanocomposites 211 Parveen Saini 10.1 Introduction 211 10.2 EMI Shield and Shielding Effectiveness 212 10.3 Conclusions 231 Acknowledgments 232 References 232 Index 239

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