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The properties of woven and knitted fabrics differ largely due to the path yarn follows in the fabric structure. This path determines the fabric’s physical properties, mechanical properties, and appearance. A slight variation to the design may result in entirely different properties for the fabric. Structural Textile Design provides detailed insight on different types of designs used for the production of woven and knitted fabrics, highlighting the effect design has on a fabric’s properties and applications. With focus on the techniques used to draw designs and produce them on weaving and knitting machines, this book will be of great interest to textile engineers, professionals and graduate students in textile technology and manufacturing.
The Text Book On Fabric Structure And Design Will Be Very Useful For Students Of Various Courses Of Study Related To Textiles Such As B.Tech In Textile Technology, Diploma In Textile Technology, Pg Diploma In Fashion Technology, B.Sc And M.Sc In Home Science, And B.Tech In Fashion Technology. The Subject, Fabric Structure And Design Forms The Core Subject In Many Universities And Polytechnics. The Book Is Well Structured And Simple In Its Presentation.In Other Words It Is Student Friendly. Even An Average Student Will Be Easily Able To Understand The Fundamentals Of The Subject. Also Review Questions, Exercises And Practice Questions At The End Of Each Chapter Help A Student To Prepare Well For His/Her Exams. The Diagrams Are Simple And Straight Forward. Different Notations Are Used In Various Designs To Enable Better Understanding For The Reader. This Book Is Intended To Be Basically A Student Edition.
Tensile Fabric Structures: Design Analysis and Construction summarises the range of tensile membrane structure forms and their applications and documents the current state of knowledge regarding loading form finding and nonlinear analysis of membrane structures. Structural forms and details are generally left exposed in tensile membrane designs and are strongly tied to architecture and aesthetics. These environmentally friendly and economically competitive structures are found in a wide range of recreational and transportation facilities. This report updates the earlier Tensioned Fabric Structures: A Practical Introduction.Topics include: history of tensioned membrane structuresmechanical lighting and thermal properties of membrane materialsfire safety and durability of membrane materialsshape determination and analysisfabrication and erection process attachment to supporting structuresstructural design and aestheticsThis report will provide practical guidance to structural engineers architects and builders of tensile membrane structures.
Understanding and predicting the structure and properties of woven textiles is important for achieving specific performance characteristics in various woven applications. Woven textiles are used in a range of products such as apparel, technical and industrial textiles. Woven textile structure: Theory and applications provides comprehensive coverage of the structure, behaviour, modeling and design of woven fabrics and their relevance to the textile industry.The first group of chapters review the fundamental principles of woven fabric structures. Part two discusses the mechanics of woven fabrics, topics include shrinkage in woven fabrics, yarn behaviour in woven fabrics and bending behaviour of woven fabrics. Part three presents a selection of chapters on design engineering of woven fabrics, themes such as textile product design methods and modelling for woven fabric design are covered. A final group of chapters is dedicated to addressing practical applications of woven fabrics.Woven textile structure: Theory and applications is essential reading for designers, engineers and technicians involved in the design, manufacture and use of woven textiles and garments. It will also bebeneficial to academics and students. - Provides comprehensive coverage of the fundamentals of woven fabric structure including geometrical modeling - Examines mechanisms of woven fabric structure featuring shrinkage, buckling, bending and creasing behaviour of textiles - Illustrates mathematical modeling and building predictive models for textile product design incorporating validation and testing
Fabric Structures in Architecture covers the varying ways textiles and their properties are used in building construction, with particular focus given to tensile structures. The text begins with the fundamental principles of textiles, including the origins of fabric architecture, then progressing to a discussion of the modern textiles of today. It covers relevant textile materials and their properties, including coatings and membranes. In addition, a range of design considerations are discussed, with detailed information on installation and failure modes. A series of case studies from around the world accompany the discussion, illustrating the applications of textiles in architecture. - Offers key coverage of the fundamental principles, from the origins of fabric architecture to modern textile - Provides analysis of relevant textile materials and their properties, including coatings and membranes - Contains expert insights in to the applications of textiles in architecture, presenting a series of relevant case-studies from around the world
An essential book for any textile artist looking to expand their repertoire into two- and three-dimensional work. Leading textile artist, teacher and examiner Jean Draper takes you through the entire process from designing through construction to embellishment with mixed media. This beautiful and very practical book includes diagrams, detailed drawings and stitch information to guide the reader through the techniques, which include hand and machine embroidery. It covers: Design, including recording information for translation into stitch (with lots of drawing tips); Choice of Threads, including some unusual threads and customizing them; Constructing with Thread, everything from knotted forms, with decorative threads, grids and stacks, and coiled structures; Stitches in Thin Air, constructing with stitch alone using moulds and soluble fabric; Using Mixed Media in Stitched Structures, such as paper, sticks, wire and plastics; Adding Structure to an Existing Fabric; Three-Dimensional Fabric Structures. Working in two and three-dimensions is a growing genre of textile art and this incorporates a fresh approach and great design advice.
Weaving: Structure and Substance looks at weave design from several different perspectives, showing how resources, ideas and practical experience can come together in a creative process of designing through making. Emphasizing the potential of woven textiles throughout, Ann Richards follows the success of her sister title Weaving Textiles that Shape Themselves and explores the tactile properties that emerge from the interaction of material and structure. The book is organized into four parts that look at the natural world as inspiration, the design resources of material and weave structure, the fabric qualities as starting points for design, and the practical issues of designing through making. With over 280 lavish photos, this book will be an invaluable resource for textile designers and enthusiasts looking for inspiration and practical advice.
Specialist yarn, woven and fabric structures are key elements in the manufacturing process of many different types of textiles with a variety of applications. This book explores a number of different specialist structures, discussing the developments in technology and manufacturing processes that have taken place in recent years.With its distinguished editor and international team of contributors, Specialist yarn, woven and fabric structures is essential reading for all textile researchers, technicians, engineers and technologies, and will also be suitable for academic purposes. - Looks at developments that have occurred in the manufacturing of specialist yarn, weave and fabric structures - Discusses different types of specialist yarn structures, such as hybrid, fancy and compound yarns - Offers insight into multicomponent fabric structures such as 3D nonwovens, flocked, knotted and jacquard woven fabrics