e-book Handbook of Textile and Industrial Dyeing: Volume 2: Applications of dyes

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    Small Bioreactors for Management of Biodegradable Waste. Permeability Properties of Plastics and Elastomers. Laurence W. Modern Techniques in Water and Wastewater Treatment. LO Kolarik. Formulas, Ingredients and Production of Cosmetics. Hiroshi Iwata. Handbook of Textile Effluent Remediation. Mohd Yusuf. Functionalized Conjugated Polyelectrolytes. Shu Wang. Mario Malinconico. Polymeric Foams Structure-Property-Performance. Bernard Obi. Lignocellulosic Fibers and Wood Handbook. Mohamed Naceur Belgacem.

    Inorganic Polyphosphates in Eukaryotic Cells. Tatiana Kulakovskaya. Sustainable Innovations in Textile Chemical Processes. Natural dyes , B H Patel, The Maharaja Sayajirao University of Baroda, India : Introduction; Classification of natural dyes; Chemistry of natural dyes; Chemistry and types of mordants; Application of mordants to textiles; Application of natural dyes to textiles; Fastness properties of natural dyes; Future trends; Sources of further information and advice; References. Direct dyes , N Sekar, Institute of Chemical Technology Mumbai, India : Introduction; Classification of direct dyes according to dyeing characteristics; Classification based on chemical structure; Bisazine dyes and copperphthalocyanine dyes; Future trends; Sources of further information and advice; References.

    Sulphur dyes , J N Chakraborty, National Institute of Technology Jalandhar, India : Introduction; Properties of sulphur dyes; Chemistry of sulphur dyes; Synthesis; Classification of sulphur dyes; Practical application; Reducing systems; Oxidizing agents; Bronzing of dyeing; Fastness of dyed textiles; Tendering effect on cellulose; Waste water load from sulphur dyebath; Strengths and limitations; Stripping of sulphur dyes; Future trends; Sources of further information and advice; References.

    Acid dyes , N Sekar, Institute of Chemical Technology Mumbai, India : Introduction; Classification of acid dyes; Azo acid dyes; Anthraquinone dyes; Acid nitro dyes; Triphenylmethane acid dyes; Water repellent dyes; Acid dyes with inherent lightfastness; Acid dyes free from -naphthylamine; Future trends; Sources of further information and advice; References.

    • Handbook of Textile and Industrial Dyeing.
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    Environmentally-friendly dyes and dyeing processes , R B Chavan, Bahir Dar University, Ethiopia : Introduction; Classification of dyes; Environmental issues in dyeing; Environmentally friendly dyeing of cotton with reactive dyes; Alternative reducing systems for the dyeing of cotton with vat and sulphur dyes; Environmentally-friendly dyeing of wool; Environmentally-friendly dyeing of polyester; Future trends; References.

    Azoic dyeing , D P Chattopadhyay, The Maharaja Sayajirao University of Baroda, India : Introduction; Advantages and disadvantages of azoic dyeing; Chemistry of azoic dyeing; Colours obtainable using azoic components; Methods for dissolution of naphthol; Naphtholation and dyeing of cotton; Intermediate treatments; Development; Aftertreatment; Dyeing of silk; Dyeing of polyester; Dyeing of nylon; Fastness properties; Stripping of azoic colours; Environmental issues associated with azoic colours; Conclusions; References.

    Receive an email when this ISBN is available used. COM Terms The second volume covers applications. Table of Contents Part 1 General aspects of dyeing: Fundamental principles of dyeing; Pre-treatment and preparation; Chemistry of dyeing; An overview of dye fastness testing; Computer aided dyestuff design.

    Part 2 Dye types and processes: Reactive dyes; Disperse dyes; Natural dyes; Direct dyes; Metal complex dyes; Sulphur dyes; Acid dyes; Environmentally friendly dyes; Fluorescent dyes; Near-infrared dyes; Dyeing processes: methods and machinery; Azoic colours. After an introductory chapter on the types of fabric and their joining properties, the first part of this important book reviews stitching and sewing technologies and factors affecting seam performance.

    Chapters discuss the mechanics of stitching, sewing and problems related to sewn textiles, mechanisms of sewing machines and intelligent sewing systems. Following sections discuss adhesive bonding of textiles including principles, methods and applications, and review bonding requirements in coating and laminating of textiles and techniques, such as ultrasonic, laser and radio frequency welding and heat sealing. The final section looks at applications of joining textiles as seams in non-iron shirts and car seat coverings, joining of wearable electronic components and technical textiles, and the joining techniques involved in nonwoven materials.

    Published in association with The Textile Institute Synopsis: For any fabric structure, the ability to understand how to join fabrics together and retain appropriate properties is critical. Joining Textiles: Principles and Applications, will provide a review of the principles and types of joining. Introductory themes include the types and mechanics of joining. Further chapters discuss factors that affect sewn seam performance and modelling joints in fabric structures. The final group of chapters explores applications and examples of textile joining.

    Topics range from the joining of smart textiles to issues affecting the joining of automotive fabrics.

    Handbook of Textile and Industrial Dyeing

    This will be an important read and reference for textile technologists, fibre scientists, textile engineers and those in academia. His research interests are in the areas of intelligent textile structures or fabrics made of shape memory materials, specifically incorporating sensors capable of wireless connections with the outside world. Table of Contents The mechanics of joining; Fundamental principles of adhesive bonding; Coating and laminating of textiles; Laser seaming of fabrics; Factors that affect sewn seam performance; Properties and performance of welded or bonded seams; Impact of the seam on car seat fabrics; Smart textiles: joints involving electronic connections.

    Durability is determined by the length of time that a textile can maintain its innate characteristics in use. The characteristics and performance of a textile are determined by its basic structural components and failure of one or more of these components will adversely affect the durability of a textile material.

    Thus, undertaking and improving textile durability is a complex endeavor. This book discusses textile durability in two parts: the many components of textile science that contribute to durability and case studies of the durability of particular types of textiles, such as durable antimicrobial textiles, protective clothing, historic textiles, silk and geotextiles. Chapters in both sections contain test methods use to evaluate specific aspects of textile durability and recent developments and future trends. Synopsis: The textile industry is based on ongoing innovation and the development of higher performance products.

    Thus, the ability of a fabric to resist wear is an important performance feature.

    go to site Durability in a textile is not only an important purchase factor for consumers, but with growing concerns over environmental issues, the ability of a fabric to have a long lifespan is a significant asset. This book is split into two parts. The first set of chapters addresses the different factors that affect textile durability, including the influence of fabric construction and fiber type, as well as properties affecting strength and dimensional stability, color fastness and the effects of light and methods for testing and improving wrinkle-resistance and textile durability.

    The last half goes on to explore the durability of particular types of textile including antimicrobial textiles, protective clothing, historic textiles, silk and geotextiles. About the Author Dr. Her primary area of research is the development of methods and instrumentation for the analysis of textile materials. She is currently working on the design, construction, and testing of a second and improved version of an instrument, the Robotic Transfer Replicator.