Principles of Fabric Formation

  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

How Are Textile Fabrics Formed?

Principles of Fabric Formation is a treatise on the modern production systems of woven, knitted, braided, nonwoven, triaxial, multiaxial, and 3D fabrics. This book offers a basic understanding of the technicalities involved in the formation of different types of textile fabrics, and brings out the relative merits and limitations of each production process in one single volume.

Gain Insight into the World of Textile Fabrics

Providing readers with an appreciation of the technicalities involved in the formation of different types of textile fabrics, the author describes all major fabric formation methods, and explains each stage of formation in the text. He also addresses all major topics related to the formation of different classes of textile fabrics, including yarn winding, warping, yarn sizing, woven fabric construction, weaving, weft knitting, warp knitting, braiding, nonwovens, and triaxial, multiaxial and 3D fabrics.

Comprised of 16 chapters, this multifaceted work:

Provides a technical description of fabric formation systemsFocuses on the diverse technicalities involved in each and every stage of formationContains a comprehensive compilation of the major principles involved

Principles of Fabric Formation

is an exclusive junior/senior undergraduate-level textbook with a focus on the diverse technical principles involved in production of the entire gamut of textile fabrics.

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Detaljer
  • SprogEngelsk
  • Sidetal509
  • Udgivelsesdato19-12-2014
  • ISBN139781466554443
  • Forlag CRC Press Inc
  • FormatHardback
Størrelse og vægt
  • Vægt839 g
  • coffee cup img
    10 cm
    book img
    15,6 cm
    23,4 cm

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    Nonwoven fabrics Fibers Textile fabrics Warp Power consumption Techno-economics Basic Weaves Weft 3-D Fabric-Formation System Application of Composite Materials Basic Machine Elements biaxial weaving Application of Electronics Beating Up Braiding System Braided Fabric Fabric Weave Design Drafting and Lifting Fabric Formation Systems Fabric Selvedge creel Fabric Quality Functional Principles of Jacquard Functional Principles of Dobby Geometry of Tubular Braids Drive to Sley Knitting System Latch Needle New Generation (Electronic) Jacquards Lifting Plan Loop Formation Nonwoven System Multiaxial 2-D and 3-D Fabrics Geometry and Properties of a Loop New Concepts of Jacquard Shedding Nonconventional Weaving Systems Guide Bar Netting System Next-Generation Shedding Systems Needle Hook Package Build QSC Random Winding Principles of Take Up Reed Width Precision winding Primary Motions Shedding Tappet Shuttleless Weaving System Process of Drawing In Secondary Motions Repeat and Shift Shedding Motions Sizing Machine Surface-Driven Cone-Winding Machine Horn Gears Three-Dimensional Fabrics Tuck Stitch Triaxial 2-D and 3-D Fabrics Shed Line Weaving System Warp-Knitting Machines Warp Tension Weft Knits Yarn Segment Tubular Braiding Machine Unwinding Behavior Machine Drive warping Weft Insertion Systems Weft-Knitted Fabrics Weft Yarns Lacing Systems Weft Tension LOOM SHED Narrow Fabric Weaving Principles of Shedding Punching Density Reinforcement of Web Multiphase Weaving Principles of Let Off Warping System Warp Shed Warp Yarns Yarn Tension Principle of Shuttle Picking Web Formation from Polymer Chips Weft Insertion Rate Weft-Knitting Machines Yarn Winding Shogging Motion of Guide Bars Shuttleless Looms Shuttleless Weft Insertion System Sizing Material sizing systems Warp-Knitted Fabrics weaving loom Weft Insertion Weft-Knitted Stitches Yarn Sheet Warp Knits Warp Sheet Weaver’s Beam Yarn Sizing

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