By Jinlian Hu,Textile Institute (Manchester, England)
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Additional info for 3-D fibrous assemblies: properties, applications and modeling of three-dimensional textile structures
The fabrics can be woven with a space between layers (core fabrics) or woven as thick, dense structures. The layers can be bound together by interlacing warp ends in the structure with the weft of adjacent layers (angle interlock) or by having the ends interlaced between the face and back layers (warp interlock). The binding yarns may also interlace vertically between the layers, producing an orthogonal weave (Mohamed, 1990). The angle-interlock woven fabrics consist of three sets of yarns. , along the loom feed direction.
Woodhead Publishing Limited, 2008 Introduction to three-dimensional fibrous assemblies 17 • 3-D woven composites show higher tensile strain-to-failure values. • 3-D woven composites exhibit higher interlaminar fracture toughness properties. 4 Three-dimensional knitted fabrics In the search for methods to reduce composite manufacturing costs, textile preforms, including knitted structures, are receiving increasing interest in the composites industry. While conformability and productivity are obvious attributes for knitted preforms, the availability of a broad range of microand macrostructural geometries has only recently been recognized.
For production of strong 3-D fabrics, cutting, sewing and joints should be avoided as much as possible. True 3-D weaving can be accomplished on special machines as already developed. The simplest case of such a structure, in which the warp is crossed by two sets of wefts, is shown in Fig. 12(a). A woven structure in which the multilayer warp moves between the top and bottom of the material, thus providing x and y directions at an angle of 45°, and with weft yarns crossing between the warp providing the z direction, is shown in Fig.
3-D fibrous assemblies: properties, applications and modeling of three-dimensional textile structures by Jinlian Hu,Textile Institute (Manchester, England)