Handbook of Thermoplastic Elastomers

  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Handbook of Thermoplastic Elastomers, Second Edition presents a comprehensive working knowledge of thermoplastic elastomers (TPEs), providing an essential introduction for those learning the basics, but also detailed engineering data and best practice guidance for those already involved in polymerization, processing, and part manufacture. TPEs use short, cost-effective production cycles, with reduced energy consumption compared to other polymers, and are used in a range of industries including automotive, medical, construction and many more. This handbook provides all the practical information engineers need to successfully utilize this material group in their products, as well as the required knowledge to thoroughly ground themselves in the fundamental chemistry of TPEs. The data tables included in this book assist engineers and scientists in both selecting and processing the materials for a given product or application. In the second edition of this handbook, all chapters have been reviewed and updated. New polymers and applications have been added — particularly in the growing automotive and medical fields — and changes in chemistry and processing technology are covered.

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  • Vægt1640 g
  • coffee cup img
    10 cm
    book img
    21,5 cm
    27,6 cm

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    Regeneration Mixing Molding Elasticity Magnetic separation Properties Additives Processing Incineration Block copolymers Morphology Extrusion Rheology Elastomers Polymerization Antioxidants Granulation Polyurethanes Synthesis Polymers Thermoforming Blow molding Carbocationic polymerization Compounding Self-healing materials Plasticizers Process Simulation Stabilizers Adhesive bonding Applications Blending Chemical composition Fillers Phase separation Shape memory materials Energy Recovery Polyurethane Mixers CoExtrusion Phase structure Injection Molding Closed Cell Foam Compression molding Flame retardants Polyaddition Nanofillers Advantages and disadvantages of thermoplastic elastomers Antistatic agents Applications for IPN thermoplastic elastomers Arborescent block copolymers Anionic Polymerization Bio-based raw materials Colorants (organic) Classification and nomenclature of thermoplastic elastomers Copolyesters Copolyesters (COPE) Copolymers of ethylene and acrylic acid Biofeedstocks Copolymers of butadiene and acrylic acid Copolymers of ethylene and methacrylic acid Current demand for thermoplastic elastomers Dynamic Vulcanization Decorating of thermoplastics diisocyanate Flow properties of polymeric melts Film and sheet orientation Foaming of thermoplastics Ethylene�propylene random copolymer Fully acrylic and branched block copolymers Foamed TPO Forecast of the growth of demand for thermoplastic elastomers Drivers for the growth of thermoplastic elastomers Hydrophilic COPA (TPA) elastomers Ionomeric thermoplastic elastomers Ethylene� propylene diene monomer Light Stabilizers extruders Morphology of ionomeric thermoplastic elastomers New catalyst systems for TPOs Nucleating agents Melt processable rubber (MPR) Fuel membranes New generation of TPUs Olefinics Polyamide elastomers Processing aids Product and process development Olefin block copolymers (OBCs) Properties of star block copolymers PVC/NBR Blends Polyamide thermoplastic elastomers (COPA) Physical thermoreversible cross-links Injection molding machinery Halogen-containing polyolefins Single-ply TPO roofing membrane Rubber waste Recycling methods for thermoplastic elastomers Recycling of thermoplastic materials Rotational Molding Styrene-ethylene/propylene-styrene (SEPS) block copolymers Star block copolymers Styrene-butadiene-styrene (SBS) block copolymers Styrene-ethylene/ethylene/propylene-styrene (SEEPS) block copolymers Styrene-isobutylene-styrene (SIBS) block copolymers Thermoplastic vulcanates Styrene-isoprene-styrene (SIS) block copolymers Thermoplastic polyurethanes (TPU) Thermoplastic vulcanizates (TPV) Synthesis of IPN thermoplastic elastomers Synthesis of star block copolymers Styrene-ethylene/butylene (SEBS) block copolymers Styrenic block copolymers (SBC) Synthesis of ionomeric thermoplastic elastomers thermoplastic elastomers Thermoplastic polyurethane elastomers Mechanical fastening of thermoplastics Thermoplastic elastomers based on interpenetrating networks (IPNs) Slush Cast Molding Laser welding of TPEs Triblock copolymers from methyl methacrylate and butadiene Super TPV (sTPV) Thermoplastic olefins (TPO) Pigments (mineral) polyvinyl chloride (PVC) New generation of polyisobutylene-based TPEs for medical applications Santoprene® Plasticization Properties of thermoplastic IPNs Reinforcing fillers perfluorosulfonate ionomers Welding of thermoplastics Trends in the technical developments Recycled rubber and plastic Tenter frames Thermoplastic elastomers based on polyacrylates Thermoplastic polyester elastomers Thermoplastic polyolefins Thermoplastic polyurethane Structure modifications of SBCs Styrene-diene block copolymers Thermoplastic fluoroelastomers Transfer molding

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