Formability Characterization of Stitched Preform Toward Applying for Composite Structures

Author:

Saboktakin A.1

Affiliation:

1. İzmir Economic University

Abstract

Abstract Characterization of the stitched textile preform is required for the prediction of textile preforms forming in the fabrication of composite structures for aerospace applications. The behavior of the preform in compression during resin injection into the preform is one of the critical issues in achieving a high-quality composite for space structures. This paper concentrates on the experimental and finite element analysis of compaction for textile preform. The investigation of mechanical properties of preforms during compression tests revealed that formability parameters of a preform can be altered by the stitching process. The load-deformation response, which is depicted in detail, had the greatest influence on the preform deformation. Compression of the stitched preform resulted in less tow undulation in the plane direction and more stitching thread undulation in the thickness direction, while the stitching thread stimulated the preform to endure more pressure. The results provided more detailed insights into the effects of compaction on other properties such as permeability and composite mechanical behavior, which is based on the internal geometry of 3D textile preforms.

Publisher

Research Square Platform LLC

Reference24 articles.

1. Anz-meador P., Opiela N., Shoots D., History of on-orbit satellite fragmentations: NASA/TM-2018-22003, Johnson Space Center, NASA, 2018.

2. The influence of stitching and unconventional fibres orientation on the tensile properties of CFRP laminates, Compos;Barile C;Part B Eng.,2017

3. Abdulhamid h, Héreil P., Experimental and numerical study of submillimeter-sized hypervelocity impacts on honeycomb sandwich structures;Deconinck p;J. Procedia engineering,2017

4. Compression Modeling of Plain Weave Textile Fabric Using Finite Elements;Dixit A;Mat.-wiss. u. Werkstofftech,2014

5. Experimental and numerical analysis of wrinkling during forming of multi-layered textile composites;Guzman-Maldonado E;Compos Struct,2019

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