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Plastics --- Elastomers --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Rubber
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Thermoplastic elastomers (TPEs), commonly known as thermoplastic rubbers, are a category of copolymers having thermoplastic and elastomeric characteristics. A TPE is a rubbery material with properties very close to those of conventional vulcanized rubber at normal conditions. It can be processed in a molten state even at elevated temperatures. TPEs show advantages typical of both rubbery materials and plastic materials. TPEs are a class of polymers bridging between the service properties of elastomers and the processing properties of thermoplastics. Nowadays, the best use of thermoplastics is in the field of biomedical applications, starting from artificial skin to many of the artificial human body parts. Apart from these, thermoplastic elastomers are being used for drug encapsulation purposes, and since they are biocompatible in many cases, their scope of applications has been broadened in the biotechnological field as well. The present book highlights many biological and biomedical applications of TPEs from which the broader area readers will benefit.
Elastomers. --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Plastics --- Rubber --- Polymer chemistry
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Rubber components are used in many demanding applications, from tyres and seals to gloves and medical devices, and failure can be catastrophic. This review of rubber product failure outlines and illustrates the common causes of failure, while addressing ways of avoiding it. There has been increasing pressure to improve performance so that rubbers can be used at higher temperatures and in harsher environments. For example, the under-the-bonnet temperature has increased in some vehicles and new medical devices require longer lifetimes in potentially degrading biological fluids. The expectations
Elastomers. --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Plastics --- Rubber
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Technical textiles are high performance speciality materials. They are produced in both woven, knitted and nonwoven forms for specific functions. Applications are found in inflatable structures such as airships and lifeboats, tents, as reinforcement in composites for construction, as body armour and vehicle protection, in filters, as a base for flexible printed circuits, hose and conveyor belts, tyres, etc. In composite construction, textiles are ideal materials as they are very lightweight but strong, and thus can be used to substitute heavy steel panels in aircraft and vehicles. Many smaller
Elastomers. --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Plastics --- Rubber
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Elastomers. --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Plastics --- Rubber
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Elastomers --- Mechanical properties. --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Plastics --- Rubber
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The Special Issue "Elastomers: From Theory to Applications" focuses on the current state of the art of elastomers, both in modern developments of rubber-like compositions and applications and from a theoretical perspective. The series of 13 publications offer the latest results in several specific sub-areas of elastomer research or review selected fields and concepts. Of particular interest are new structures and functionalities incorporated into elastomers, leading to the enhanced properties of crosslinked elastomeric materials for several applications, and/or to a better understanding of the structure‒property relationships and practical behaviour.
Elastomers. --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Plastics --- Rubber
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Permeability properties are essential data for the selection of materials and design of products across a broad range of market sectors from food packaging to Automotive applications to Medical Devices. This unique handbook brings together a wealth of permeability data in a form that enables quick like-for-like comparisons between materials. The data is supported by a full explanation of its interpretation, and an introduction to the engineering aspects of permeability in polymers. The third edition includes expanded explanatory text which makes the book accessible to novices
Plastics --- Elastomers --- Permeability. --- Chemistry --- Polymers and Plastics --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Rubber
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In spite of the practical importance of the friction, wear and lubrication of elastomers, limited literature is available on this topic. Addressing these needs, this book will give readers a complete understanding of rubber tribology and the key developments in this field over the last ten years. For the first time new and important achievements such as theories of rubber abrasion and surfacial mechanochemical effects of rubber wear are presented. The book pays special attention to the principles of rubber wear - a clear understanding of which is essential for those striving towards further in
Elastomers. --- Tribology. --- Friction --- Surfaces (Technology) --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Plastics --- Rubber
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This book provides an extensive overview of current trends in the area of elastomers and their composites from the chapters contributed by internationally recognized specialists. The book deals with novel synthesis, modelling and experimental methods in elastomers. Contents include: new approach to crosslinking, liquid crystal elastomers, nanocomposites, smart elastomers, elastomers in microelectronics and microfluidics, elastomers in cement concrete and mortar, experimental testing and modelling. Each section demonstrates how enhancements in materials, processes and characterization techniques can improve performance in the field of engineering. The book provides a unique opportunity to discover the latest research on elastomer advances from laboratories around the world. This book addresses to industrial and academic researchers in the fields of physical, chemical, biological sciences and engineering.
Elastomers. --- Elastomeric materials --- Reinforced elastomers --- Polymers --- Plastics --- Rubber --- Physical Sciences --- Engineering and Technology --- Materials Science --- Biochemistry
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