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Thermoplastic and thermosetting polymers and composites [[electronic resource] /] / Linda D. Tsai and Matthew R. Hwang, editors
Thermoplastic and thermosetting polymers and composites [[electronic resource] /] / Linda D. Tsai and Matthew R. Hwang, editors
Pubbl/distr/stampa New York, : Nova Science Publishers, c2011
Descrizione fisica 1 online resource (235 p.)
Disciplina 668.4/23
Altri autori (Persone) TsaiLinda D
HwangMatthew R
Collana Materials science and technologies
Soggetto topico Thermoplastic composites
Thermoplastics
Soggetto genere / forma Electronic books.
ISBN 1-62257-118-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910453791203321
New York, : Nova Science Publishers, c2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Thermoplastic and thermosetting polymers and composites [[electronic resource] /] / Linda D. Tsai and Matthew R. Hwang, editors
Thermoplastic and thermosetting polymers and composites [[electronic resource] /] / Linda D. Tsai and Matthew R. Hwang, editors
Pubbl/distr/stampa New York, : Nova Science Publishers, c2011
Descrizione fisica 1 online resource (235 p.)
Disciplina 668.4/23
Altri autori (Persone) TsaiLinda D
HwangMatthew R
Collana Materials science and technologies
Soggetto topico Thermoplastic composites
Thermoplastics
ISBN 1-62257-118-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910779777503321
New York, : Nova Science Publishers, c2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Thermoplastic and thermosetting polymers and composites [[electronic resource] /] / Linda D. Tsai and Matthew R. Hwang, editors
Thermoplastic and thermosetting polymers and composites [[electronic resource] /] / Linda D. Tsai and Matthew R. Hwang, editors
Edizione [1st ed.]
Pubbl/distr/stampa New York, : Nova Science Publishers, c2011
Descrizione fisica 1 online resource (235 p.)
Disciplina 668.4/23
Altri autori (Persone) TsaiLinda D
HwangMatthew R
Collana Materials science and technologies
Soggetto topico Thermoplastic composites
Thermoplastics
ISBN 1-62257-118-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Intro -- THERMOPLASTIC AND THERMOSETTING POLYMERS AND COMPOSITES -- THERMOPLASTIC AND THERMOSETTING POLYMERS AND COMPOSITES -- CONTENTS -- PREFACE -- AROMATIC POLYESTER NANOCOMPOSITES CONTAINING MODIFIED CARBON NANOTUBE -- ABSTRACT -- 1. INTRODUCTION -- 1.1 Carbon Nanotube -- 1.2. Aromatic Polyester -- 1.3 CNT/Polymer Nanocomposites -- 2. FABRICATION OF AROMATIC POLYESTER NANOCOMPOSITES -- 2.1. Materials -- 2.2. Preparation of Aromatic Polyester Nanocomposites -- 3. POLY (ETHYLENE 2,6-NAPHTHALATE) NANOCOMPOSITE -- 3.1. Modification of CNT -- 3.2. Thermal Behavior of PEN Nanocomposites -- 3.3. Rheological Behavior of PEN nanocomposites -- 3.4. Morphology and Mechanical Properties of PEN nanocomposites -- 3.5. Crystallization Behavior of PEN Nanocomposite -- 4. THERMOTROPIC LIQUID CRYSTAL POLYMER NANOCOMPOSITE -- 4.1. Background -- 4.2. CNT Modification -- 4.3. Rheological Properties -- 4.4. Morphology -- 4.5. Mechanical Properties -- 4.6. Thermal Stability -- 5. SUMMARY -- REFERENCES -- BIOFIBER REINFORCED STARCH COMPOSITES -- ABSTRACT -- 1. INTRODUCTION -- 2. BIODEGRADABLE POLYMERS -- 2.1 Significance of Biodegradable Polymers -- 2.2 Different Biodegradable Polymers -- 2.2.1 Natural Polymers -- 2.2.2 Polymers Derived using Biotechnology -- 2.2.3 Synthetic Polymers -- 2.2.4 Blends of Synthetic and Natural Polymers -- 3. STARCH -- 3.1 Constituents -- 3.2 Structure -- 3.3 Morphology -- 3.4 Thermal Stability -- 4. NATURAL FIBERS -- 4.1 Chemical Composition of Natural Fibres -- 4.2 Geometrical and Mechanical Properties -- 5. THERMOPLASTIC STARCH -- 5.1 Fabrication -- 5.2 Structure -- 5.3 Mechanical and Aging Behvaiour -- 5.4 Glass Transition Temperature -- 6. MACRO FIBER REINFORCED STARCH COMPOSITES -- 6.1 Mechanical Properties -- 6.2 Thermal Stability -- 6.3 XRD Analysis -- 6.4 Contact Angle Analysis -- 6.5 Viscoelastic Properties.
6.6 Water Absorption -- 7. NANO FIBER REINFORCED STARCH COMPOSITES -- 7.1 Cellulose Reinforced Starch Composites -- 7.2 Whisker-Based Nano-Biocomposites -- 7.3 Starch Nanocrystals-Based Nano-Biocomposites -- REFERENCES -- THERMOPLASTIC AND THERMOSETTING COMPOSITES WITH NATURAL FIBERS -- ABSTRACT -- 1. INTRODUCTION -- 1.1 Cellulose -- 1.2 Hemicellulose -- 1.3 Lignin -- 2. LIGNOCELLULOSIC FIBERS AS REINFORCEMENT FOR COMPOSITES -- 2.1 Jute Fibers -- 2.2 Sisal Fibers -- 2.3 Curaua Fibers -- 2.4 Banana Pseudo-Stem or Husk Fibers -- 2.5 Coconut Fibers -- 2.6 Sugar-Cane Bagasse Fibers -- 3. SURFACE TREATMENTS OF FIBERS -- 3.1 Alkaline Treatment: Effect on the Vegetal Fiber Surface -- 3.2 Effect of Differents Treatments on the Vegetal Fiber Surface -- 4. THERMOPLASTICS AND THERMOSETTING POLYMERS REINFORCED WITH NATURAL FIBERS -- 4.1 Thermoplastic Resins -- 4.1.1 Polyethylene (PE) -- 4.1.2 Polypropylene (PP) -- 4.1.3 Poly(Vinyl Chloride) (PVC) -- 4.1.4 Polystyrene (PS) -- 4.1.5 Others Thermoplastics Matrixes -- 4.2 Thermosetting Polymers -- 4.2.1 Unsaturated Polyester (UPE) Resin -- 4.2.2. Phenolic Resins -- 4.2.3. Epoxy Resins -- 4.2.4. Others Thermosetting Resins -- 5. MECHANICAL PROPERTIES OF NATURAL FIBERS COMPOSITES -- 5.1. Thermosetting Composites -- 5.2. Thermoplastic Composites -- REFERENCES -- PHASE SEPARATION OF PMMA-MODIFIED VINYL-ESTER THERMOSETS: MORPHOLOGY, THERMODYNAMICS AND MECHANICAL PROPERTIES -- ABSTRACT -- 1. INTRODUCTION -- 2. EXPERIMENTAL -- 2.1. Materials and Sample Preparation -- 2.2. Cloud-Point Measurements -- 2.3. Electron Microscopy -- 2.4. Physical and Mechanical Tests -- 3. RESULTS AND DISCUSSION -- 3.1. Thermodynamic Behavior of the Mixtures -- 3.1.1. St-PMMA Quasibinary Systems -- 3.1.2. St-VE Quasibinary Systems -- 3.1.3. VE-PMMA Quasibinary Systems -- 3.1.4. St-VE-PMMA Quasiternary Systems.
3.2. Final Morphologies of the Thermosets -- 3.2.1. Neat St-VE Networks -- 3.2.2. PMMA-Modified Networks Cured at 80 °C -- 3.2.3. PMMA-Modified Networks Cured at 40 °C -- 3.2.4. PMMA-Modified Networks Cured at 25 °C -- 3.3. Final Properties of the Thermosets -- 3.3.1. Volume Shrinkage -- 3.3.2. Dynamic Mechanical Tests -- 3.3.3. Mechanical and Fracture Behavior -- CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- THERMOPLASTIC AND THERMOSETTING POLYMERS FROM VEGETABLE OILS -- ABSTRACT -- INTRODUCTION -- 1. THERMOPLASTIC POLYMERS -- 1.1 Acyclic Diene Metathesis (ADMET) Polymerization -- 1.2 Thiol-Ene Coupling -- 2. THERMOSETTING POLYMERS -- 2.1 Direct Polymerization of C=C -- 2.1.1 Cationic Polymerization of C=C -- 2.1.2 Hydrosilylation of C=C -- 2.2 Functionalization of C=C and Further Crosslinking -- 2.2.1 Biobased Epoxy Resins -- 2.2.2 Biobased Polyols and Polyurethanes -- 2.2.3 Enone-Containing Triglyceride Derivatives -- 2.2.4 Biobased Acrylate Oils -- CONCLUSION -- REFERENCES -- MECHANISMS OF IMPREGNATION IN COMPRESSION MOLDING OF THERMOPLASTIC MATRIX COMPOSITES -- ABSTRACT -- INTRODUCTION -- MATERIALS AND METHODS -- RESULTS AND DISCUSSION -- NUMERICAL ANALYSIS OF FILM STACKING CONSOLIDATION -- NUMERICAL ANALYSIS OF COMMINGLED YARN CONSOLIDATION -- CONCLUSIONS -- REFERENCES -- THERMAL AND CHEMICAL GLASS TRANSITION OF THERMOSETS IN THE PRESENCE OF TWO TYPES OF INORGANIC NANOPARTICLES -- ABSTRACT -- INTRODUCTION -- EXPERIMENTAL -- Materials and Sample Preparation -- Curing Process -- Rheologic Measurements -- Calorimetric Measurements -- RESULTS AND DISCUSSION -- Resin Nanocomposites -- Curing -- CONCLUSION -- ACKNOWLEDGMENT -- REFERENCES -- INDEX.
Record Nr. UNINA-9910812315603321
New York, : Nova Science Publishers, c2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
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