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Selected, peer reviewed papers from the 4th International Conference on Textile Engineering and Materials (ICTEM 2014), August 23-24, 2014, Shenzhen, China
A groundbreaking book on the recent advances in chemical finishing, innovative fabrication strategies frequently adopted for the mechanical finishing of textiles, as well as the environmental issues in textile sectors Advanced materials are undoubtedly becoming very popular as substitutes for traditional materials in the textile engineering field. Advanced textile engineering materials are giving way to innovative textile materials with novel functions and are widely perceived as offering huge potential in a wide range of applications such as healthcare, defense, personal protective equipment, textile antennas, garments for motion capture, and sensors, etc. Advanced Engineering Textile Materials contains 13 chapters written by high profile contributors with many years of experience in textile technology, and cover fundamental and advanced approaches associated with the design and development of textile implants, conductive textiles, 3D textiles, smart-stimuli textiles, antiballistic textiles and fabric structures designed for a medical application intrabody/extra-body, implantable/non-implantable) and various modification and processing techniques.
Advances in Modeling and Simulation in Textile Engineering: New Concepts, Methods, and Applications explains the advanced principles and techniques that can be used to solve textile engineering problems using numerical modeling and simulation. The book draws on innovative research and industry practice to explain methods for the modeling of all of these processes, helping readers apply computational power to more areas of textile engineering. Experimental results are presented and linked closely to processes and methods of implementation. Diverse concepts such as heat transfer, fluid dynamics, three-dimensional motion, and multi-phase flow are addressed. Finally, tools, theoretical principles, and numerical models are extensively covered. Textile engineering involves complex processes which are not easily expressed numerically or simulated, such as fiber motion simulation, yarn to fiber formation, melt spinning technology, optimization of yarn production, textile machinery design and optimization, and modeling of textile/fabric reinforcements. Provides new approaches and techniques to simulate a wide range of textile processes from geometry to manufacturing Includes coverage of detailed mathematical methods for textiles, including neural networks, genetic algorithms, and the finite element method Addresses modeling techniques for many different phenomena, including heat transfer, fluid dynamics and multi-phase flow
A groundbreaking book on the recent advances in chemical finishing, innovative fabrication strategies frequently adopted for the mechanical finishing of textiles, as well as the environmental issues in textile sectors Advanced materials are undoubtedly becoming very popular as substitutes for traditional materials in the textile engineering field. Advanced textile engineering materials are giving way to innovative textile materials with novel functions and are widely perceived as offering huge potential in a wide range of applications such as healthcare, defense, personal protective equipment, textile antennas, garments for motion capture, and sensors, etc. Advanced Engineering Textile Materials contains 13 chapters written by high profile contributors with many years of experience in textile technology, and cover fundamental and advanced approaches associated with the design and development of textile implants, conductive textiles, 3D textiles, smart-stimuli textiles, antiballistic textiles and fabric structures designed for a medical application intrabody/extra-body, implantable/non-implantable) and various modification and processing techniques.
Advances in Smart Medical Textiles: Treatments and Health Monitoring provides comprehensive coverage on smart textiles, the emerging and important materials that are finding applications in the fields of medicine and healthcare. The book explores the range of smart textiles available for use in medicine and the transfer of these innovative technologies into medical applications. Early chapters survey various smart fibers, fabrics, and finishes, while subsequent sections focus on the role of smart textiles in treating patients, from wound care to rehabilitation, and the use of textile-based sensors and wearable electronics for monitoring patient health. - Provides a comprehensive review of the materials used in smart medical textiles - Analyzes the application of these textiles in medical treatments and sensors for health monitoring - Covers the range of international research in the field and keeps focus on the needs of the textile industry
Textile materials or materials made from textiles are probably among the most important materials in the world. Textile materials are not only present everywhere in modern daily life, but have been for thousands of years. Besides obvious textile applications such as clothes or hometextile there are also many more hidden applications. For example, textile filters, textiles in production processes or composite materials are just a few ways that they can be applied. Altogether, it is implied that modern civilization without textiles is not possible. This book is dedicated to the advances in textile research and application. Here, readers must keep in mind that the final textile in the final application is the product of many different production steps, which is known as the textile chain. Many different disciplines contribute to this textile chain, such as chemistry and machine engineering but also less obvious influences like agricultural science in terms of cotton or wool fiber production. The life of a textile material starts with fiber production; this can be a natural process for plant fibers, animal fibers or regenerated fibers from natural resources. In contrast, chemical fibers see their origin via chemical synthesis. After fiber production, yarn production follows, which is in the field of spinning technology. From the yarn comes the textile materials as fabrics or non-wovens are produced using processes such as weaving, knitting, braiding, etc. These textile products are further modified by dyeing and printing processes. Finishing is often also used to realize special functional properties on a textile product. Finally, the textile product is realized as either cloth, home textile or technical application. Besides technical aspects, design and marketing also play an important role. After following this summary, it is obvious that this book cannot cover every single aspect of textile and textile products. Therefore, this book headlines with every chapter a topic in the area of textile research and application, which is a topic in actual scientific research but also in industrial development. The main topics include: microwave based processes, plasma technology, photoactive textiles, electrospinning, braiding processes, wool materials, coatings, textile functionalization, and UV-protective and light responsive materials This book is dedicated to readers from universities and industries that engage in some form of textile production. For the industry, it can help to promote ideas for new innovative processes and products. For university students especially graduates s it can help to broaden their expertise in very different fields of the textile world. Also, established scientists could benefit from this text to use as a tool to generate new ideas for further research.
The book “Frontiers and Textile Materials will deal with the important materials that can be utilized for value-addition and functionalization of textile materials. The topics covered in this book includes the materials like enzymes, polymers, etc. that are utilized for conventional textile processing and the advanced materials like nanoparticles which are expected to change the horizons of textiles. The futuristic techniques for textile processing like plasma are also discussed.
Biotechnology has impacted the textiles industry through the development of more efficient and environmentally friendly manufacturing processes, as well as enabling the design of improved textile materials. This book will provide a thorough overview of current and future focuses of biotechnology in the fibre and textile industry. Part one of the book opens with a review of technologies involved in textile biotechnology. Chapters explore the design and engineering of novel enzymes for textile applications and developments in processes and equipment for enzymatic textile treatments. Part two investigates the modification of particular fibres through the use of biotechnology. Key topics include the treatment of wool and silk fibres and the enzymatic treatment versus conventional processing of cotton.With expert contributions from leaders in their fields, Advances in textile biotechnology is a comprehensive guide for those in the textile and fibre industry, as well as experts in the biology, chemical and environmental engineering industries. - Provides a thorough overview of current and future focuses of biotechnology in the fibre and textile industry - Explores production of enzymes, searching for efficient production systems and also documents the advantages and limitations associated with the process - Reviews the debate surrounding enzymatic treatment versus conventional processing of cotton along with engineering of plants for improved fibre qualities
Automotive textiles represent one of the most valuable international markets for technical textiles. Textile advances in the automotive industry provides an in-depth review of the design and development of automotive textiles and the recent advances made in technical textiles for a variety of automotive applications.Part one discusses issues such as automotive textile requirements from a car producer's perspective, mapping the automotive textile supply chain, advances in textile fabrics including nonwoven fabrics, and recycling issues. Part two focuses on automotive interiors with chapters on performance and style of interior textiles, materials and design for car seats, and the reduction of interior noise in vehicles. Part three discusses the important safety applications of automotive textiles, including airbags and tyres. Part four concludes by assessing how textiles can be used in automotive bodywork.With its distinguished editor and a team of contributors from both academia and industry, this book is an essential reference for a broad spectrum of readers, ranging from scientists, designers, product development staff to company strategists. - Provides an in-depth review of recent advances in the design and development of automotive textiles - Comprehensively examines the automotive textile industry covering key requirements, the supply chain, fabrics and recycling - Addresses important safety considerations in automotive textiles including airbags and tyres
Advances in Functional and Protective Textiles explores the latest research in the use of textile materials for protective clothing. The book's international roster of researchers in industry and academia describe innovative applications in defense, medical, sports, fire protection, radiation protection, and more. This book is an invaluable resource for readers seeking to produce textiles with self-cleaning, antimicrobial, super-hydrophobic, UV-protective, insect repellant, flame retardant or anti-felting properties. Particular attention is given to textile fibers, including cotton, wool, viscose, and other synthetic fibers whose properties solve many problems. Sustainable approaches to the processing of textiles for protective properties are also addressed, as are hazards. - Introduces the advanced testing and modeling methods that are necessary for the production of protective textiles - Describes the properties of the latest advanced chemicals and materials used to make protective textiles and clothing - Covers every step in the development of protective clothing, from the engineering of novel materials, to advanced fabrication methodologies and applications