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Structural design of face fabrics and the core as a premise for compression behavior of 3D woven sandwich fabric

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2018
Authors
Mihailović, Tatjana
Asanović, Koviljka
Cerović, Dragana D.
Article (Published version)
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Abstract
In this work, an experimental study on compression properties of two E-glass 3D woven fabrics, known as integrally woven sandwich fabrics, has been presented. Compression properties of 2D face fabrics and the core, as structural parts of integrally woven sandwich fabric, have also been investigated. Compression behavior of the samples (compressibility, compression work, and compressive resilience) was analyzed from the aspect of the weave design of face fabrics and the core structure (shape and density of the pile yarns). Results of the investigation showed that 8 shaped core structure, the greater surface density of the pile yarns, and the less compact structure of face fabrics ensure better compression properties of 3D fabrics. Specific weave design of face fabrics and the structure of the core significantly influence the behavior of 3D fabrics during successive increases, followed by a gradual decrease of pressure. During the loading of 3D woven structures, three regions of curves c...an clearly be seen compared to two regions which are registered at 2D face fabrics. Concerning 3D woven fabrics, the first region represents compression of the core, the second region is prolonged core compression and the third region refers to the simultaneous compression of pile yarns in the core and face fabrics. The density of pile yarns plays an important role in the region 1. In region 2, both the shape and density of the pile yarns are significant. Influence of the weave of face fabrics on compression behavior of 3D fabric can be noticed to a lesser extent in the region 2 and, especially in the region 3, where highly packed yarns assemblies are created.

Keywords:
E-glass / 3D woven sandwich fabric / face fabric / core / compressibility / compression work / compressive resilience
Source:
Journal of Sandwich Structures & Materials, 2018, 20, 6, 718-734
Publisher:
  • Sage Publications Ltd, London

DOI: 10.1177/1099636216678768

ISSN: 1099-6362

WoS: 000443626000003

Scopus: 2-s2.0-85052605439
[ Google Scholar ]
8
5
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/3848
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Mihailović, Tatjana
AU  - Asanović, Koviljka
AU  - Cerović, Dragana D.
PY  - 2018
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/3848
AB  - In this work, an experimental study on compression properties of two E-glass 3D woven fabrics, known as integrally woven sandwich fabrics, has been presented. Compression properties of 2D face fabrics and the core, as structural parts of integrally woven sandwich fabric, have also been investigated. Compression behavior of the samples (compressibility, compression work, and compressive resilience) was analyzed from the aspect of the weave design of face fabrics and the core structure (shape and density of the pile yarns). Results of the investigation showed that 8 shaped core structure, the greater surface density of the pile yarns, and the less compact structure of face fabrics ensure better compression properties of 3D fabrics. Specific weave design of face fabrics and the structure of the core significantly influence the behavior of 3D fabrics during successive increases, followed by a gradual decrease of pressure. During the loading of 3D woven structures, three regions of curves can clearly be seen compared to two regions which are registered at 2D face fabrics. Concerning 3D woven fabrics, the first region represents compression of the core, the second region is prolonged core compression and the third region refers to the simultaneous compression of pile yarns in the core and face fabrics. The density of pile yarns plays an important role in the region 1. In region 2, both the shape and density of the pile yarns are significant. Influence of the weave of face fabrics on compression behavior of 3D fabric can be noticed to a lesser extent in the region 2 and, especially in the region 3, where highly packed yarns assemblies are created.
PB  - Sage Publications Ltd, London
T2  - Journal of Sandwich Structures & Materials
T1  - Structural design of face fabrics and the core as a premise for compression behavior of 3D woven sandwich fabric
EP  - 734
IS  - 6
SP  - 718
VL  - 20
DO  - 10.1177/1099636216678768
ER  - 
@article{
author = "Mihailović, Tatjana and Asanović, Koviljka and Cerović, Dragana D.",
year = "2018",
abstract = "In this work, an experimental study on compression properties of two E-glass 3D woven fabrics, known as integrally woven sandwich fabrics, has been presented. Compression properties of 2D face fabrics and the core, as structural parts of integrally woven sandwich fabric, have also been investigated. Compression behavior of the samples (compressibility, compression work, and compressive resilience) was analyzed from the aspect of the weave design of face fabrics and the core structure (shape and density of the pile yarns). Results of the investigation showed that 8 shaped core structure, the greater surface density of the pile yarns, and the less compact structure of face fabrics ensure better compression properties of 3D fabrics. Specific weave design of face fabrics and the structure of the core significantly influence the behavior of 3D fabrics during successive increases, followed by a gradual decrease of pressure. During the loading of 3D woven structures, three regions of curves can clearly be seen compared to two regions which are registered at 2D face fabrics. Concerning 3D woven fabrics, the first region represents compression of the core, the second region is prolonged core compression and the third region refers to the simultaneous compression of pile yarns in the core and face fabrics. The density of pile yarns plays an important role in the region 1. In region 2, both the shape and density of the pile yarns are significant. Influence of the weave of face fabrics on compression behavior of 3D fabric can be noticed to a lesser extent in the region 2 and, especially in the region 3, where highly packed yarns assemblies are created.",
publisher = "Sage Publications Ltd, London",
journal = "Journal of Sandwich Structures & Materials",
title = "Structural design of face fabrics and the core as a premise for compression behavior of 3D woven sandwich fabric",
pages = "734-718",
number = "6",
volume = "20",
doi = "10.1177/1099636216678768"
}
Mihailović, T., Asanović, K.,& Cerović, D. D.. (2018). Structural design of face fabrics and the core as a premise for compression behavior of 3D woven sandwich fabric. in Journal of Sandwich Structures & Materials
Sage Publications Ltd, London., 20(6), 718-734.
https://doi.org/10.1177/1099636216678768
Mihailović T, Asanović K, Cerović DD. Structural design of face fabrics and the core as a premise for compression behavior of 3D woven sandwich fabric. in Journal of Sandwich Structures & Materials. 2018;20(6):718-734.
doi:10.1177/1099636216678768 .
Mihailović, Tatjana, Asanović, Koviljka, Cerović, Dragana D., "Structural design of face fabrics and the core as a premise for compression behavior of 3D woven sandwich fabric" in Journal of Sandwich Structures & Materials, 20, no. 6 (2018):718-734,
https://doi.org/10.1177/1099636216678768 . .

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