LEADER 05638nam 2200661 a 450 001 9910139647303321 005 20230725052116.0 010 $a1-283-17617-3 010 $a9786613176172 010 $a1-118-08258-3 010 $a1-118-08272-9 010 $a1-118-08287-7 035 $a(CKB)2550000000039188 035 $a(EBL)697512 035 $a(OCoLC)739118483 035 $a(SSID)ssj0000506334 035 $a(PQKBManifestationID)11320725 035 $a(PQKBTitleCode)TC0000506334 035 $a(PQKBWorkID)10515788 035 $a(PQKB)11710163 035 $a(MiAaPQ)EBC697512 035 $a(EXLCZ)992550000000039188 100 $a20110324d2011 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aSelf-healing polymers and polymer composites$b[electronic resource] /$fMing Qiu Zhang, Min Zhi Rong 210 $aHoboken, N.J. $cWiley$d2011 215 $a1 online resource (438 p.) 300 $aDescription based upon print version of record. 311 $a0-470-49712-2 320 $aIncludes bibliographical references and index. 327 $aSELF-HEALING POLYMERS AND POLYMER COMPOSITES; CONTENTS; PREFACE; 1: BASICS OF SELF-HEALING: STATE OF THE ART; 1.1 BACKGROUND; 1.1.1 Adhesive Bonding for Healing Thermosetting Materials; 1.1.2 Fusion Bonding for Healing Thermoplastic Materials; 1.1.3 Bioinspired Self-Healing; 1.2 INTRINSIC SELF-HEALING; 1.2.1 Self-Healing Based on Physical Interactions; 1.2.2 Self-Healing Based on Chemical Interactions; 1.2.3 Self-Healing Based on Supramolecular Interactions; 1.3 EXTRINSIC SELF-HEALING; 1.3.1 Self-Healing in Terms of Healant Loaded Pipelines 327 $a1.3.2 Self-Healing in Terms of Healant Loaded Microcapsules1.4 INSIGHTS FOR FUTURE WORK; REFERENCES; 2: THEORETICAL CONSIDERATION AND MODELING; 2.1 MOLECULAR MECHANISMS; 2.1.1 Self-Healing Below Glass Transition Temperature; 2.1.2 Self-Healing Above Glass Transition Temperature; 2.2 HEALING MODELING; 2.2.1 Percolation Modeling; 2.2.2 Continuum and Molecular-Level Modeling of Fatigue Crack Retardation; 2.2.3 Continuum Damage and Healing Mechanics; 2.2.4 Discrete Element Modeling and Numerical Study; 2.3 DESIGN OF SELF-HEALING COMPOSITES; 2.3.1 Entropy Driven Self-Assembly of Nanoparticles 327 $a2.3.2 Optimization of Microvascular Networks2.4 CONCLUDING REMARKS; REFERENCES; 3: EXTRINSIC SELF-HEALING VIA ADDITION POLYMERIZATION; 3.1 DESIGN AND SELECTION OF HEALING SYSTEM; 3.2 MICROENCAPSULATION OF MERCAPTAN AND EPOXY BY IN SITU POLYMERIZATION; 3.2.1 Microencapsulation of Mercaptan; 3.2.2 Microencapsulation of Epoxy; 3.3 CHARACTERIZATION OF SELF-HEALING FUNCTIONALITY; 3.3.1 Self-Healing Epoxy Materials with Embedded Dual Encapsulated Healant: Healing of Crack Due to Monotonic Fracture; 3.3.2 Factors Related to Performance Improvement 327 $a3.3.3 Self-Healing Epoxy Materials with Embedded Dual EncapsulatedHealant: Healing of Fatigue Crack3.3.4 Self-Healing Epoxy/Glass Fabric Composites with Embedded Dual Encapsulated Healant: Healing of Impact Damage; 3.4 CONCLUDING REMARKS; REFERENCES; 4: EXTRINSIC SELF-HEALING VIA CATIONIC POLYMERIZATION; 4.1 MICROENCAPSULATION OF EPOXY BY UV IRRADIATION-INDUCED INTERFACIAL COPOLYMERIZATION; 4.2 ENCAPSULATION OF BORON-CONTAINING CURING AGENT; 4.2.1 Loading Boron-Containing Curing Agent onto Porous Media; 4.2.2 Microencapsulation of Boron-Containing Curing Agent via Hollow Capsules Approach 327 $a4.3 CHARACTERIZATION OF SELF-HEALING FUNCTIONALITY4.3.1 Self-Healing Epoxy Materials with Embedded Epoxy-Loaded Microcapsules and (C2H5)2O·BF3-Loaded Sisal; 4.3.2 Self-Healing Epoxy Materials with Embedded Dual Encapsulated Healant; 4.4 CONCLUDING REMARKS; REFERENCES; 5: EXTRINSIC SELF-HEALING VIAANIONIC POLYMERIZATION; 5.1 PREPARATION OF EPOXY-LOADED MICROCAPSULES AND LATENT HARDENER; 5.1.1 Microencapsulation of Epoxy by in situ Condensation; 5.1.2 Preparation of Imidazole Latent Hardener; 5.2 SELF-HEALING EPOXY MATERIALS WITH EMBEDDED EPOXY-LOADED MICROCAPSULES AND LATENT HARDENER 327 $a5.3 SELF-HEALING EPOXY/WOVEN GLASS FABRIC COMPOSITES WITH EMBEDDED EPOXY-LOADED MICROCAPSULES AND LATENT HARDENER: HEALING OF INTERLAMINAR FAILURE 330 $a"This book covers the fundamentals, theory, design, fabrication, characterization, and application of self-healing polymers and polymer composites. Innovative routes that correlate materials chemistry to the self-healing functionality are summarized for future industrial use. Throughout the book, the authors emphasize integration of existing techniques and / or novel synthetic approaches for target-oriented materials design and fabrication. With this book, experienced readers will gain a comprehensive view of the emerging field, while new researchers will understand the framework for creating new materials or new applications"--$cProvided by publisher. 330 $a"This book covers the fundamentals, theory, design, fabrication, characterization, and application of self-healing polymers and polymer composites"--$cProvided by publisher. 606 $aPolymeric composites 606 $aSelf-healing materials 615 0$aPolymeric composites. 615 0$aSelf-healing materials. 676 $a547/.7 676 $a668.9 686 $aTEC009010$2bisacsh 700 $aZhang$b Ming Qiu$0962223 701 $aRong$b Min Zhi$0962224 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910139647303321 996 $aSelf-healing polymers and polymer composites$92181728 997 $aUNINA