Smart textile developers draw on diverse fields of knowledge to produce unique materials with enhanced properties and vast potential. Several disciplines outside the traditional textile area are involved in the construction of these smart textiles, and each individual field has its own language, specific terms and approaches. Multidisciplinary know-how for smart-textiles developers provides a filtered knowledge of these areas of expertise, explaining key expressions and demonstrating their relevance to the smart textiles field. Part one reviews materials employed in the production of smart textiles, before part two explores the technologies that may be used and incorporated into smart textiles. Finally, product development and applications are the focus of part three.
Key Features: reviews materials used in the production of smart textiles; examines the technologies used in smart textiles, such as optical fibres and polymer based resistive sensors; investigates strategies for technology management, innovation and improved development.
Contents: The future of smart-textiles development: New enabling technologies, commercialisation and market trends. Part 1 Materials: Types and processing of electro-conductive and semiconducting materials for smart textiles; Optical fibres for smart photonic textiles; Conductive nanofibres and nanocoatings for smart textiles; Polymer-based resistive sensors for smart textiles; Soft capacitance fibers for touch-sensitive smart textiles. Part 2 Technologies: Textile fabrication technologies for embedding electronic functions into fibres, yarns and fabrics; Fabrication technologies for the integration of thin-film electronics into smart textiles; Organic and large-area electronic (OLAE) technologies for smart textiles; Joining technologies for smart textiles; Kinetic, thermoelectric and solar energy harvesting technologies for smart textiles; Signal processing technologies for activity-aware smart textiles. Part 3 Product development and applications: Technology management and innovation strategies in the development of smart textiles; Improving the sustainability of smart textiles; Medical applications of smart textiles; Automotive applications of smart textiles; Architectural applications of smart textiles.
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Dr Tunde Kirstein is editor-in-chief of the Sulzer Technical Review, based in Winterthur, Switzerland. Formerly senior researcher at the Wearable Computing Lab of ETH Zurich and project coordinator at the Swiss Textile College, Dr Kirstein has carried out several smart-textiles projects with scientific and industrial partners. She has also achieved great success as journalist and PR manager, and has extensive experience in organizing workshops and symposiums for the industry.
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Buch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Smart-textiles developers draw on diverse fields of knowledge to produce unique materials with enhanced properties and vast potential. Several disciplines outside the traditional textile area are involved in the construction of these smart textiles, and each individual field has its own language, specific terms and approaches. Multidisciplinary know-how for smart-textiles developers provides a filtered knowledge of these areas of expertise, explaining key expressions and demonstrating their relevance to the smart-textiles field.Following an introduction to the new enabling technologies, commercialisation and market trends that make up the future of smart-textiles development, part one reviews materials employed in the production of smart textiles. Types and processing of electro-conductive and semiconducting materials, optical fibres for smart photonic textiles, conductive nanofibres and nanocoatings, polymer-based resistive sensors, and soft capacitance fibres for touch-sensitive smart textiles are all discussed. Part two then investigates such technologies as the embedding of electronic functions, the integration of thin-film electronics, and the development of organic and large-area electronic (OLAE) technologies for smart textiles. Joining technologies are also discussed, alongside kinetic, thermoelectric and solar energy harvesting technologies, and signal processing technologies for activity-aware smart textiles. Finally, product development and applications are the focus of part three, which investigates strategies for technology management, innovation and improved sustainability, before the book concludes by exploring medical, automotive and architectural applications of smart textiles.With its distinguished editor and international team of expert contributors, Multidisciplinary know-how for smart-textiles developers is a key tool for readers working in industries including design, fashion, textiles, through to electronics, computing and material science. It also provides a useful guide to the subject for academics working across a wide range of fields. 524 pp. Englisch. Seller Inventory # 9780857093424
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Buch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Smart-textiles developers draw on diverse fields of knowledge to produce unique materials with enhanced properties and vast potential. Several disciplines outside the traditional textile area are involved in the construction of these smart textiles, and each individual field has its own language, specific terms and approaches. Multidisciplinary know-how for smart-textiles developers provides a filtered knowledge of these areas of expertise, explaining key expressions and demonstrating their relevance to the smart-textiles field.Following an introduction to the new enabling technologies, commercialisation and market trends that make up the future of smart-textiles development, part one reviews materials employed in the production of smart textiles. Types and processing of electro-conductive and semiconducting materials, optical fibres for smart photonic textiles, conductive nanofibres and nanocoatings, polymer-based resistive sensors, and soft capacitance fibres for touch-sensitive smart textiles are all discussed. Part two then investigates such technologies as the embedding of electronic functions, the integration of thin-film electronics, and the development of organic and large-area electronic (OLAE) technologies for smart textiles. Joining technologies are also discussed, alongside kinetic, thermoelectric and solar energy harvesting technologies, and signal processing technologies for activity-aware smart textiles. Finally, product development and applications are the focus of part three, which investigates strategies for technology management, innovation and improved sustainability, before the book concludes by exploring medical, automotive and architectural applications of smart textiles.With its distinguished editor and international team of expert contributors, Multidisciplinary know-how for smart-textiles developers is a key tool for readers working in industries including design, fashion, textiles, through to electronics, computing and material science. It also provides a useful guide to the subject for academics working across a wide range of fields. Seller Inventory # 9780857093424
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