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Weaving multi-layer fabrics for reinforcement of engineering componentsThe performance of interlinked, multi-layer fabrics and near net shape preforms for engineering applications, woven on a 48 shaft dobby loom using glass, aramid, and carbon continuous filament yarns is assessed. The interlinking was formed using the warp yarns. Two basic types of structure were used. The first used a single warp beam and hence each of the warp yarns followed a similar path to form four layer interlinked reinforcements and preforms. In the second two warp beams were used, one for the interlinking yarns which pass from the top to the bottom layer through-the-thickness of the fabric and vice versa, and the other to provide 'straight' yarns in the body of the structure to carry the axial loading. Fabrics up to 15mm in thickness were constructed with varying amounts of through-the-thickness reinforcement. Tapered T and I sections were also woven, with the shaping produced by progressive removal of ends during construction. These fabrics and preforms were impregnated with resin and cured to form composite samples for testing. Using these two basic types of construction, the influence of reinforcement construction and the proportion and type of interlinking yarn on the performance of the composite was assessed.
Document ID
19940012377
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Hill, B. J.
(Ulster Coll. Newtownabbey, United Kingdom)
Mcilhagger, R.
(Ulster Coll. Newtownabbey, United Kingdom)
Mclaughlin, P.
(Ulster Coll. Newtownabbey, United Kingdom)
Date Acquired
September 6, 2013
Publication Date
August 1, 1993
Publication Information
Publication: NASA. Langley Research Center, FIBER-TEX 1992: The Sixth Conference on Advanced Engineering Fibers and Textile Structures for Composites
Subject Category
Composite Materials
Accession Number
94N16850
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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