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This practical guide begins with general background to the polyethylene family, with price, production and market share information. It describes the basic types of polyethylene including virgin & filled polyethylene, copolymers, block and graft polymers and composites, and reviews the types of additives used in polyethylene. It gives the low down on the properties, including, amongst others, rheological, mechanical, chemical, thermal, and electrical properties. It goes on to describe the processing issues and conditions for the wide range of techniques used for polyethylene, and also consider
Polyethylene. --- Plastics. --- Plastic materials --- Plastic products --- Polymers --- Synthetic products --- Condensation products (Chemistry) --- Elastomers --- Plasticity --- Crinothene --- Polythene --- Ethylene --- Thermoplastics
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Nanocomposites (Materials) --- Polyethylene. --- Crinothene --- Polythene --- Ethylene --- Thermoplastics --- Nanocomposite materials --- Nanostructured composite materials --- Nanostructured composites --- Composite materials --- Nanostructured materials
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Poly(Ethylene Terephthalate) (PET) is an industrially important material which is not treated specifically in any other book. Poly(Ethylene Terephthalate) Based Blends, Composites and Nanocomposites fills this gap and systematically guides the reader through all aspects of PET and its blends, composites and nanocomposites. It covers theoretical fundamentals, nanocomposites preparation, modification techniques, structure-property relationships, characterisation of the different blends and composites, and material choice for specific applications. Consisting of contributions from experts
Beverage containers -- Handbooks, manuals, etc. --- Polyethylene terephthalate. --- Surfaces (Technology) -- Analysis. --- Chemical Engineering --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Polyethylene. --- Crinothene --- Polythene --- Ethylene --- Thermoplastics
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Polyethylene. --- Polyethylene terephthalate. --- Ethylene terephthalate polymer --- Mylar (Trademark) --- PET (Chemical) --- Terephthalic acid-ethylene glycol polymer --- Phthalate esters --- Polyesters --- Thermoplastics --- Crinothene --- Polythene --- Ethylene
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Composite nonwovens are versatile materials with a range of applications. This book reviews fibre types used in these materials, manufacturing processes, structure and physical properties. It also reviews applications in such areas as absorbent hygiene products (e.g. diapers) and wipes.Systematic and comprehensive information on composite nonwovensCritical review of progress in research and development on composite nonwovensComment on future research direction and ideas for product development
Composite materials. --- Nonwoven fabrics. --- Polyethylene. --- Mechanical Engineering --- Engineering & Applied Sciences --- Industrial & Management Engineering --- Crinothene --- Polythene --- Ethylene --- Thermoplastics --- Fabrics, Nonwoven --- Synthetic fabrics --- Textile fabrics --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Materials
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Artificial joints. --- Joints --- Prosthesis. --- Arthroplasty. --- Polyethylene --- Surgery. --- Therapeutic use. --- Crinothene --- Polythene --- Ethylene --- Thermoplastics --- Surgery, Plastic --- Prostheses --- Prosthetics --- Moulage in medicine --- Artificial organs --- Biomedical materials --- Implants, Artificial --- Joint prostheses --- Joints, Artificial --- Prosthetic joints --- Total joint replacement --- Orthopedic implants --- Prosthesis --- Surgery
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Polyethylene --- Composite materials. --- Nanocomposites (Materials) --- Analysis. --- Nanocomposite materials --- Nanostructured composite materials --- Nanostructured composites --- Composite materials --- Nanostructured materials --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Materials --- Crinothene --- Polythene --- Ethylene --- Thermoplastics
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This volume covers various aspects of cross-linked polyethylene (XLPE). The contents include manufacture, morphology, structure, properties, applications, early stage development, cross-linking techniques, recycling process, physical and chemical properties as well as the scope and future aspects of XLPE. It focuses on the life cycle analysis of XLPE and their industrial applications and commercial importance. This book will be of use to academic and industry researchers, as well as graduate students working in the fields of polymer science and engineering, materials science, and chemical engineering. .
Polymers . --- Materials science. --- Engineering—Materials. --- Polymer Sciences. --- Characterization and Evaluation of Materials. --- Materials Engineering. --- Material science --- Physical sciences --- Polymere --- Polymeride --- Polymers and polymerization --- Macromolecules --- Polyethylene. --- Crinothene --- Polythene --- Ethylene --- Thermoplastics
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This book provides a necessary bridge between the values of engineering end-use parameters of polyethylene resins and their scientific molecular and structural characteristics. The main goal is to translate such common parameters, such as the melt index of a resin or the dart impact strength of a film sample, into the universal language of the polymer science. After this translation is completed, many facets of the resin properties became transparent and easily explainable
Polyethylene --- Molecular weights. --- Gums and resins, Synthetic. --- Mechanical properties. --- Artificial resins --- Gums and resins, Artificial --- Resins, Synthetic --- Synthetic resins --- Protective coatings --- Synthetic products --- Synthetic gums and resins industry --- Freezing points of solutions --- Atomic weights --- Chemistry, Physical and theoretical --- Cryoscopy --- Crinothene --- Polythene --- Ethylene --- Thermoplastics
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Provides a necessary bridge between the values of engineering end-use parameters of polyethylene resins and their scientific molecular and structural characteristics. The main goal is to translate common parameters, such as the melt index of a resin or the dart impact strength of a film sample, into the universal language of polymer science.
Gums and resins, Synthetic. --- Molecular weights. --- Polyethylene. --- Crinothene --- Polythene --- Ethylene --- Thermoplastics --- Freezing points of solutions --- Atomic weights --- Chemistry, Physical and theoretical --- Cryoscopy --- Artificial resins --- Gums and resins, Artificial --- Resins, Synthetic --- Synthetic resins --- Protective coatings --- Synthetic products --- Synthetic gums and resins industry
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