Advances in Wool Technology (Woodhead Publishing in Textiles)
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McMillan Browse Download. PDF s. Quilt Me! Gray and Linda E. Gray PDF. It includes expert reviews of various developments in recycling, sustainable production and process optimisation. Part 2 Chemical aspects in textile recycling: Recycling waste water from textile production; Recycling and reuse of textile chemicals. Part 3 Recycled textile products: Development of products made of reclaimed fbers; Manufacturing nonwovens and other products using recycled fbers; Textile products produced from alternative fbers.
Part 4 Applications of recycled textiles: Recycling of textiles used in the operating theatre; Composite products from post-consumer carpet; Utilization of recycled carpet fbers for reinforcement of concrete and soil. Whilst some types of protective clothing may be designed primarily for non- thermal hazards e. This book reviews key types of protective clothing, technologies for heating and cooling and, fnally, modeling aspects of thermal stress and strain.
Part 3 Understanding and modelling thermal stress in protective clothing: The human theroregulatory system; Cold stress, strain and exposure survival modelling; Modelling cold exposure survival using cold water immersion suits; Modelling heat stress and heat strain; Modelling thermal skin burning using protective clothing.
With contributions from leading experts in the feld, this book provides an important overview of key developments in the feld. Chapters cover the use of high performance textiles in such areas as protective clothing, heat and fre protection, medicine, civil engineering and the energy sector. CONTENTS High performance textile structures and properties: an overview; Novel surface treatments for high performance textiles; High performance textiles for protective clothing; High performance textiles for heat and fre protection; High performance medical textiles; High performance wound care textiles; High performance getextiles; High performance fbers and textiles for civil engineering applications; High performance fbre-reinforced composites for sustainable energy applications.
Published in association with The Textile Institute pages x mm 6 x 9 hardback Q3 ISBN: 1 6 E-ISBN: 0 5 Modifcation of fbres for technical applications S Mukhopadhyay, Indian Institute of Technology Delhi, India Modifcation of fbres for technical applications reviews the physical and chemical modifcation of natural and synthetic fbres for technical applications. Problems such as the high level of moisture absorption of natural fbres, poor wettability by non-polar plastics, and insuffcient adhesion between untreated fbres and the polymer matrix result in poor properties in composites, for example.
The book reviews a range of methods to physically and chemically modify fbres to provide appropriate functionality for technical applications.
Handbook of fre resistant textiles provides a comprehensive overview of the considerable advances that have occurred in the feld of fre resistant textiles in recent years. CONTENTS Part 1 Overview of fre resistant textiles: Combustion processes of textile fbres; Burning mechanisms of fbres; Chemical modifcation of natural and synthetic textile fbres to improve fame retardancy; Multi-component fame resistant coating techniques for textiles; Care and maintenance of fabrics used for fame resistant personal protective equipment PPE ; Safety, health and environmental aspects of fame retardants.
Part 2 Types of fre resistant fbre: Flame resistant cotton; Flame resistant manmade cellulosic fbres; Flame resistant wool and wool blends; Flame resistant ceramic fbres; Flame resistant composites and nanocomposites; Flame resistant nonwoven fabrics. Part 3 Testing and regulation of fre resistant textiles: Selection of fame resistant protective clothing; Flame resistant clothing standards and regulations; Characterizing comfort properties of fame resistant fabrics and garments; Physiological impact of fame resistant clothing: Managing heat stress; Flame retardancy testing and regulation of soft furnishings.
Part 4 Applications of fre resistant textiles: Flame resistant textiles for fash fres; Flame resistant textiles for structural and proximity fre fghting; Flame resistant textiles for electric arc fash hazards; Flame resistant textiles for molten metal hazards; Flame resistant textiles for transport applications; Flame retardant fber-reinforced composites. Part 2 Harmful effects of fre effuents: Hazards from smoke and irritants; Asphyxiant components of fre effuents; Effects of fre effuents on fre victims.
Part 3 Biological assessment of fre toxicity: Experimental methods in combustion toxicology; Animal exposure studies; Application of human animal exposure studies to human fre safety; In vitro biological toxicity assessments for fre combustion products; A combined fre smoke and lung model test equipment.
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Part 4 Toxicity assessment using chemical analysis: Sampling and measurement of toxic fre effuents; Bench-scale generation of fre effuents; Large scale generation and characterisation of fre effuents; Effects of the material and fre conditions on toxic product yields; Estimation of toxicity during burning of common materials. Part 5 National and international fre safety regulations: Prescriptive regulations and tests considering the toxicity of fre effuents; An international standardised framework for prediction of fre gas toxicity.
Part 6 Numerical simulation of fres and their hazards: Computer simulation of fre hazards and evacuation; Toxic hazard calculation models for use with fre effuent data; Modelling fre growth and toxic gas formation. Several disciplines outside the traditional textile area are involved in the construction of these smart textiles, and each individual feld has its own language, specifc terms and approaches. Multidisciplinary know-how for smart-textiles developers provides a fltered knowledge of these areas of expertise, explaining key expressions and demonstrating their relevance to the smart textiles feld.
Part 1 Materials: Types and processing of electro-conductive and semiconducting materials for smart textiles; Optical fbres for smart photonic textiles; Conductive nanofbres and nanocoatings for smart textiles; Polymer-based resistive sensors for smart textiles; Soft capacitance fbers for touch-sensitive smart textiles. Part 2 Technologies: Textile fabrication technologies for embedding electronic functions into fbres, yarns and fabrics; Fabrication technologies for the integration of thin-flm 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. Part 2 Applications of smart textiles for protection: Smart protective textiles for older people; Smart high performance textiles for protection in construction and geotechnical applications; Smart textiles for protection of armoured vehicles; Protective clothing for frefghters and frst responders; Advances in chemical protective clothing.
A valuable source of knowledge for researchers and designers of protective textiles and clothing for defence applications. CBRNe World CONTENTS Part 1 Design issues in military clothing and equipment: Key issues in body armour: Threats, materials and design; Assessing military equipment requirements and capability: The Australian experience; Anthropometric methods for the successful design of military clothing and equipment; Psychological issues in military uniform design; Colour and camoufage design issues in military clothing; Materials and design issues for military helmets; Design issues in military footwear and hand wear.
Part 2 Applications to particular types of military clothing and equipment: Customization of a lightweight bullet proof vest for the female form; Optimisation of body armour design parameters: Vulnerability and survivability assessment; High performance ballistic protection using polymer nanocomposites; Modelling the comfort and protection qualities of chemical, biological, radiological and nuclear CBRN protective clothing; Advances in materials for chemical, biological, radiological and nuclear CBRN protective clothing; Designing load carriage systems for military personnel; Advanced hydration systems for soldiers: The example of the US army.
CBRNe World CONTENTS Part 1 General requirements for military textiles: Future soldier requirements: Dealing with complexity; Non-woven fabrics for military applications; Mechanical failure criteria for textiles and textile damage resistance; The sensory properties and comfort of military fabrics and clothing; Testing and analyzing comfort properties of textile materials for military; Sweat management for military applications; Cold-weather clothing; Designing military uniforms with high- tech materials.
Part 2 Protection: High-performance ballistic fbres; Ballistics testing of textile materials; Chemical and biological protection; Self-decontaminating materials for chemical biological protective clothing; Camoufage fabrics for military protective clothing; New developments in coatings and fbers for military applications; Military fabrics for fame protection. Part 2 Applications: Functional nanofbers for fltration applications; Functional nanofbers for drug delivery applications; Functional nanofbers for tissue engineering applications; Functional nanofbers in lithium-ion batteries; Functional nanofbers in sensor applications; Functional nanofbers in clothing for protection against chemical and biological hazards; Functional nanofbers in food processing; Functional nanofbers in sound absorption, electromagnetic wave attenuation and biomedical applications; Functional nanofbers for water purifcation; Functional nanofbers in microelectronics applications; Future trends in the processing of functional nanofbers.
Part 2 Fibrous materials as a concrete reinforcement material: Steel fbre reinforced concrete: Material properties and structural applications; Natural fbre reinforced concrete; The role of fbre reinforcement in mitigating shrinkage cracks in concrete. Part 3 Fibrous materials based composites for civil engineering applications: Fibrous materials reinforced composites production techniques; Fibrous materials reinforced composite for internal reinforcement of concrete structures; Fibrous materials reinforced composites for structural health monitoring; Fibrous insulation materials in building engineering applications; Acoustic behaviour of fbrous materials; The use of textile materials for architectural membranes.
Materials World CONTENTS Part 1 Main types of textiles and polymers used in building and construction: Types and production of textiles used for building and construction; Technical characteristics and requirements of textiles used for building and construction; Fibre reinforced polymer composite materials for building and construction; Developing and testing textiles and coatings for tensioned membrane structures; Polymer foils used in construction.
Part 2 Applications of textiles and polymers in construction: Tensile structures textiles for architecture and design; The role, properties and applications of textile materials in sustainable buildings; Learning from nature: Lightweight constructions using the technical plant stem; The role of textiles in providing biomimetic solutions for construction; Smart textile and polymer fbres for structural health monitoring; Textiles for insulation systems, control of solar gains and thermal losses and solar systems; Sustainable buildings: Biomimicry and textile applications; Challenges in using textile materials in architecture: The case of Australia; Innovative composite- fbre components in architecture.
Part 2 Developments in interior textiles: Advances in joining fabrics for the furniture industry; Environmental issues in interior textiles; The role of textiles in indoor environmental pollution: problems and solutions; Developments in fame retardants for interior materials and textiles; Fire testing of upholstered furniture, current and future methods; Innovative textiles for seating. International Textile and Apparel Association CONTENTS Carpet types and requirements; Structure and properties of carpet fbres and yarns; Advances in carpet weaving; Developments in wool carpet manufacture; Developments in textile sports surfaces; Developments in handmade carpets: Introduction; Developments in handmade carpets: Design and manufacture; Reducing static electricity in carpets; Developments in the thermal processing of carpets.
Advances in Wool Technology
Part 2 Automotive interiors: Design of automotive interior textiles; Three-dimensional textiles and nonwovens for polyurethane foam substitution in car seats; Physiologically optimized car seats; Smart textiles in automotive interiors; Reducing noise in automotive interiors; Leather and coated textiles in automotive interiors. Part 3 Safety applications of automotive textiles: Technical developments and market trends of automotive airbags; Key technology developments in textiles for use in automotive tires.
Part 4 Use of textiles in automotive bodywork: Textile structures for load-bearing applications in automobiles; Textiles composites for automotive structural components. Part 2 Testing, regulation and assessing the benefts of fre retardant materials: Challenges in fre testing: A testers viewpoint; Challenges in fre testing: Reaction to fre tests and assessment of fre toxicity; New and potential fammability regulations; Life cycle assessment of consumer products with a focus on fre performance.
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Part 3 Applications of fre retardant materials: The risks and benefts of fame retardants in consumer products; Composites having improved fre resistance; Improving the fre safety of road vehicles; Firefghters protective clothing; Fire protection in military fabrics; Flame retardant materials for maritime and naval applications; Materials with reduced fammability in aerospace and aviation.
Part 2 Specifc sports: Design and materials in baseball; Design and materials in snowboarding; Design and materials in ice hockey; Design and materials in fy fshing; Design and materials in archery; Design and materials in rowing; Design and materials in athletics equipment; Design and materials in ftness equipment. Part 2 Innovative fbres and fabrics in sport: High performance and high functional fbres and textiles; Smart and intelligent textiles and fbres; Coated and laminated textiles in sportswear.
Part 3 Sportswear and comfort: Physiological comfort of sportswear; Elastic textiles. Part 4 Protection: Is protection part of the game? Protection against impact using clothing and personal equipment; Protection against cold; Water resistance and water vapour transfer. Part 5 Specifc applications: Textile composites in sports products; Textiles in sailing; Textile use in sport shoes.
International Dyer CONTENTS Part 1 Materials and design: Overview of protective clothing; Standards for protective textiles; Fashion and function factors affecting the design and use of protective clothing; Steps in the selection of protective clothing materials; Fibres and fabrics for protective textiles; Technical textiles for protection; Intelligent textiles for protection; Surface treatments for protective textiles; Evaluation of protective clothing systems using manikins; Interactions between protection and thermal comfort; Modelling thermal burn injury protection.
Part 2 General protection requirements and applications: Civilian protection and protection of industrial workers from chemicals; Textiles for UV protection; Textiles for protection against cold; Thermal Heat and fre protection; Microorganism protection; Textiles for respiratory protection; Electrostatic protection; Ballistic protection; Chemical and biological protection. Part 3 Case studies: Military protection; Fire fghters protective clothing; Protection against knives and other weapons; Flight suits for military aviators; Protection for workers in the oil and gas industry; Motorcyclists.
Advances in filament yarn spinning of textiles and polymers - Materials Today
Journal of Natural Fibers CONTENTS Manufacturing and internal geometry of textiles; Mechanical analysis of textiles; Rheological behaviour of pre- impregnated textile composites; Forming textile composites; Manufacturing with thermosets; Composites manufacturing thermoplastics; Modeling, optimization and control of resin fow during manufacturing of textile composites with liquid molding; Mechanical properties of textile composites; Flammability and fre resistance of composites; Cost analysis; Aerospace applications; Application of textile composites in the construction industry; Textile reinforced composites in medicine; Textile composites in sports products.
Materials World a wealth of interesting information, technical rationale and quality text and diagrams. Barrier fabrics for protection against aerosols Textile Progress: Volume No.
Design specifcation, application and evaluation of nonwoven products in the area of healthcare and hygiene textiles are also addressed in this book. Part 2 Biomimetic applications in textiles: Biomimetic principles in clothing technology; Self-cleaning textiles using the lotus effect; Analysing the thermal properties of animal furs for the production of artifcial furs; The role of plant stems in providing biomimetic solutions for innovative textiles in composites; Bionic developments based on textile materials for technical applications.
Biotextiles as medical implants provides an invaluable single source of information on the main types of textile materials and products used for medical implants. Chapters in the frst part of the book are concerned with the manufacture, properties and types of biotextiles used for medical applications, while the second part of the book provides a concise overview of the various medical applications of biotextiles, including stents, drug delivery systems and medical sutures.
The book is an invaluable reference for manufacturers, designers, producers of textile implant materials. It will also be of interest to professionals within the healthcare industry, including scientists, nurses and students.