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Thermoforming of Single and Multilayer Laminates explains the fundamentals of lamination and plastics thermoforming technologies along with current and new developments. It focuses on properties and thermoforming mechanics of plastic films and in particular single and multilayered laminates, including barrier films. For environmental and economic reasons, laminates are becoming increasingly important as a replacement for solid sheets and paint finishes in many industries, including transportation, packaging, and construction. Yet the processes of film formability during the e
Thermoforming. --- Plastics --- Molding. --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding (Chemical technology) --- Molding --- Laminated plastics.
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Plastics --- Molding. --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding (Chemical technology)
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Plastics --- Molding. --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding (Chemical technology)
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Plastics --- Molding --- kwaliteitszorg spuitgietbedrijf --- matrijsontwerp --- rtm --- troubleshooting --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding (Chemical technology) --- Plastics - Molding
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This unified approach to polymer materials science is divided in three major sections: - Basic Principles - covering historical background, basic material properties, molecular structure, and thermal properties of polymers. - Influence of Processing on Properties - tying processing and design by discussing rheology of polymer melts, mixing and processing, the development of anisotropy, and solidification processes. - Engineering Design Properties - covering the different properties that need to be considered when designing a polymer component - from mechanical properties to failure mechanisms, electrical properties, acoustic properties, and permeability of polymers. A new chapter introducing polymers from a historical perspective not only makes the topic less dry, but also sheds light on the role polymers played, for better and worse, in shaping today's industrial world. The first edition was praised for the vast number of graphs and data that can be used as a reference. A new table in the appendix containing material property graphs for several polymers further strengthens this attribute. The most important change made to this edition is the introduction of real-world examples and a variety of problems at the end of each chapter
Polymers. --- Plastics --- Molding. --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding (Chemical technology) --- Polymere --- Polymeride --- Polymers and polymerization --- Macromolecules
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"For over 27 years, "Designing Plastic Parts for Assembly" has been the definitive guide for both seasoned part designers and novices to the field, facilitating cost-effective design decisions and ensuring that the plastic parts and products will stand up under use.The detailed yet simplified discussion of material selection, manufacturing techniques, and assembly procedures enables the reader to evaluate plastic materials and design plastic parts with confidence. Good joint design and implementation, the geometry and nature of the component parts, the types of load involved, and other fundamental information necessary for a successful outcome are all included. Throughout, the treatment is practice-oriented and focused on everyday problems and situations. The 9th edition provides an inside look, through detailed case histories in Chapter 3, on how to design plastic parts to prevent injuries and even death. It also features additional information on application of laser welding, an extension of the chapter on fasteners to cover application of thread-cutting bolts, and many more minor updates and improvements throughout"--Page 4 of cover.
Plastics --- Machine parts --- Molding. --- Machinery --- Parts, Machine --- Spare parts --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding (Chemical technology) --- Parts
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Engineering of polymers is not an easy exercise: with evolving technology, it often involves complex concepts and processes. This book provides the theoretical essentials: understanding of processes, a basis for the use of design software, and much more.
Polymers. --- Plastics --- Polymer melting. --- Molding. --- Fusion --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding (Chemical technology) --- Polymere --- Polymeride --- Polymers and polymerization --- Macromolecules
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Covers the fundamental unit operations involved in processing of thermoplastic and thermoset nanocomposites. The processing methods include extrusion, injection molding, blow molding, and thermoforming. Also covered are nanoparticle dispersion, distribution, and compatibilization, and applications of polymer nanocomposites.
Plastics --- Molding. --- Nanocomposites (Materials) --- Nanocomposite materials --- Nanostructured composite materials --- Nanostructured composites --- Composite materials --- Nanostructured materials --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding (Chemical technology)
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Injection molding of plastics. --- Molding (Chemical technology) --- Plastics --- Molding. --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Casting (Chemical technology) --- Chemical engineering --- Molding
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A surge of new molding technologies is transforming plastics processing and material forms to the highly efficient, integrated manufacturing that will set industry standards in the early years of this century. This book is a survey of these technologies, putting them into context and accentuating opportunities. The relations among these technologies are analyzed in terms of products, materials, processing, and geometry.
Chemistry --- Polymers and Plastics --- Plastics --- Molding (Chemical technology) --- Casting (Chemical technology) --- Chemical engineering --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding.
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