EFFECT OF FIBER DISTRIBUTION ON COMBINED COMPRESSION-TORSIONAL RESPONSE OF HYBRID COMPOSITES

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Autore principale: Sneha Bhushan Cheryala
Natura: Recurso digital
Pubblicazione: Zenodo 2019
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author Sneha Bhushan Cheryala
author_facet Sneha Bhushan Cheryala
contents The objective of the current work is to study the role of fibre distribution in the combined loading response of hybrid glass/carbon composites using finite element analysis. The change in response with varying fibre distribution is presented taking into account of the different fibre location in the representative volume element (RVE). The results from the combined loading analysis show a noticeable interaction between the compression and shear response of the hybrid composite model, for both the cases of fibre distribution. The peak compressive strength was deteriorated by the addition of shear along with it. The model with symmetric glass/carbon fibre distribution had greater compressive strength and failure strain compared to the one with un-symmetric fibre distribution. An excessive shear deformation was noticed in the model with un-symmetric fiber distribution. The significance of fibre distribution in the combined loading response was dictated by the variation in the compressive strength with increasing shear, on the failure envelope.
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spellingShingle EFFECT OF FIBER DISTRIBUTION ON COMBINED COMPRESSION-TORSIONAL RESPONSE OF HYBRID COMPOSITES
Sneha Bhushan Cheryala
The objective of the current work is to study the role of fibre distribution in the combined loading response of hybrid glass/carbon composites using finite element analysis. The change in response with varying fibre distribution is presented taking into account of the different fibre location in the representative volume element (RVE). The results from the combined loading analysis show a noticeable interaction between the compression and shear response of the hybrid composite model, for both the cases of fibre distribution. The peak compressive strength was deteriorated by the addition of shear along with it. The model with symmetric glass/carbon fibre distribution had greater compressive strength and failure strain compared to the one with un-symmetric fibre distribution. An excessive shear deformation was noticed in the model with un-symmetric fiber distribution. The significance of fibre distribution in the combined loading response was dictated by the variation in the compressive strength with increasing shear, on the failure envelope.
title EFFECT OF FIBER DISTRIBUTION ON COMBINED COMPRESSION-TORSIONAL RESPONSE OF HYBRID COMPOSITES
url https://doi.org/10.5281/zenodo.15436833