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Polypropylene: Structure, Blends and Composites: Structure and Morphology Copolymers and Blends Composites

Editat de J. Karger-Kocsis
en Limba Engleză Carte – 31 dec 1994
Although polypropylene has been marketed since the 1950s, research and development in this area is still vigorous. The consumption of polypropylene over the years has been relatively high, mainly due to the steady improvement of its property profile. Polypropylene: Structures, Blends and Composites, in three separate volumes, reflects on the key factors which have contributed to the success of polypropylene, dealing with all aspects of structure-performance relationships relevant to thermoplastic polymers and related composites.
Volume 1, Structure and Morphology, deals with polymorphism in polypropylene homo- and copolymers, where molecular and supermolecular structures are covered, and the processing-induced structure development of polypropylene, showing the interrelation between the processing-induced morphology and mechanical performance.
Volume 2, Copolymers and Blends, contains comprehensive surveys of the nucleation and crystallisation behaviour of the related systems. It includes the development of morphology and its effects on rheological and mechanical properties of polypropylene-based alloys and blends and a review of polypropylene-based thermoplastic elastomers.
Volume 3, Composites, gives a comprehensive overview of filled and reinforced systems with polypropylene as a matrix material, with the main emphasis on processing-structure-property-interrelationships. Chapters cover all aspects of particulate filled, chopped fibre-, fibre mat- and continuous fibre-reinforced composites. Interfacial phenomena, such as adhesion, wetting and interfacial crystallisation, are also included as important aspects of this subject.
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Specificații

ISBN-13: 9780412614408
ISBN-10: 0412614405
Pagini: 1324
Ilustrații: 3 volume-set.
Ediția:1994
Editura: SPRINGER NETHERLANDS
Colecția Springer
Locul publicării:Dordrecht, Netherlands

Public țintă

Research

Cuprins

List of contributors. Preface. Adhesive bonding of polypropylene. Amorphous or atactic polypropylene. Anticorrosion coatings with polypropylene. Antistatic and conducting composites of polypropylene. Appliances. Application of shear-controlled orientation in injection molding. of isotactic polypropylene. Automation in injection molding. Beta-modification of isotactic polypropylene. Biaxially oriented polypropylene (BOPP) processes. Bumper recycling technology. Calendering of polypropylene. Commingled yarns and their use for composites. Construction principles of injection molds. Controlled rheology polypropylene. Copolymerization. Crash performance of glass fiber reinforced polypropylene tubes. Crazing and shear yielding in polypropylene. Crosslinking of polypropylene. Crystallization. Crystallization of syndiotactic polypropylene. Designing properties of polypropylene. Die swell or extrudate swell. Dielectric relaxation and dielectric strength of polypropylene. and itscomposites. Dyeing of polypropylene fibers. Elastomeric polypropylene homopolymers using metallocene. catalysts. Electron microscopy. Elongational viscosity and its meaning for the praxis. Environmental stress cracking of polypropylene. Epitaxial crystallization of isotactic and syndiotactic polypropylene. Extrusion die design guidelines for polypropylene. Fatigue performance of polypropylene and related composites. Fiber orientation due to processing and its prediction. Fillers for polypropylene. Fire hazard with polypropylene. Flame-retardant polypropylene compositions. From quality control to quality assurance in injection molding. Gamma-phase of isotactic polypropylene. Gas diffusion in and through polypropylene. Geotextiles and geomembranes. Glass mat reinforced thermoplastic polypropylene. Hard-elastic or 'springy' polypropylene. High-modulus and high-strength polypropylene fibers and films. Impregnation techniques for fiber bundles or tows. In-situ reinforced polypropylene blends. Industrial polymerization processes. Infrared and Raman spectroscopy of polypropylene. Injection molding of isotactic polypropylene. Injection molding: various techniques. Integrated manufacturing. Interfacial morphology and its effects in polypropylene composites. Intumescent fire retardant polypropylene formulations. Joining: methods and techniques for polypropylene composites. Lamella dimension and distribution. 'Living' or plastic hinges. Long term properties and lifetime prediction for polypropylene. Mathematical modelling !of propylene polymerization. Mechanical and thermal properties of long glass fiber reinforced. polypropylene. Melt blowing technology. 'Melt fracture' or extrudate distortions. Melt spinning of polypropylene. Melt spinning: technology. Metallocene catalysed polymerization: industrial technology. Metallocene catalysis and tailor-made polyolefins. Microporous polypropylene films and fibers. Miscibility and phase separation in polypropylene blends. Modelling and analysis of composites' thermoforming. Modelling of the compression behavior of polypropylene foams. Molecular structure: characterization and related properties of. homo- and copolymers. Morphology and nanostructure of polypropylenes by atomic force microscopy. Morphology-mechanical property relationships in injection. molding. Natural fiber/polypropylene composites. Nuclear magnetic resonance spectroscopy of polypropylene. copolymers. Nuclear magnetic resonance spectroscopy of polypropylene homopolymers. Nucleation. Optical clarity of polypropylene products. Orientation characterization in polypropylene. P-V-T data and their uses. Particulate filled polypropylene composites. Photostabilizers. Pigmentation of polypropylene. Polymer blends: fundamentals. Polymorphism in crystalline polypropylene. Polypropylene blends with commodity resins. Polypropylene blends with elastomers. Polypropylene blends with engineering and spe