Numerical Modeling of Low-Velocity Impact on Composite Laminates

The response over the low-velocity impact of various shape impactors on a glass fiber reinforced polymer composite has been numerically analyzed with a hemispherical, flat, partially flat and truncated shaped impactor used to analyze the behavior of resistance of a GFRP composite at various speed...

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Autors principals: Chanda, Diganta, Islam, Md. Ashraful
Format: Article
Idioma:anglès
Publicat: Research and Development Wing, MIST 2023
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Accés en línia:http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/770
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author Chanda, Diganta
Islam, Md. Ashraful
author_browse Chanda, Diganta
Islam, Md. Ashraful
author_facet Chanda, Diganta
Islam, Md. Ashraful
author_sort Chanda, Diganta
collection DSpace
description The response over the low-velocity impact of various shape impactors on a glass fiber reinforced polymer composite has been numerically analyzed with a hemispherical, flat, partially flat and truncated shaped impactor used to analyze the behavior of resistance of a GFRP composite at various speeds. The numerical analysis was carried out using finite element analysis software, ABAQUS (Dynamic/Explicit). To assess the response of the composite laminates while impacting, finite element models were developed. The Hashin failure criteria were used to represent braided glass-fiber reinforced composite plate damage. Regarding projectile shape, the impact reaction of the composite was examined. The results also show that the mechanical response of woven glass fiber polymer composite under low-velocity projectile impact largely depends on the impactor’s nose shape and the velocity of the impactor.
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spelling oai:localhost:123456789-7702023-09-24T07:48:26Z Numerical Modeling of Low-Velocity Impact on Composite Laminates Chanda, Diganta Islam, Md. Ashraful Glass fiber reinforced polymer composite, Finite element analysis (FEA), Hashin failure criteria, Low-velocity projectile impact The response over the low-velocity impact of various shape impactors on a glass fiber reinforced polymer composite has been numerically analyzed with a hemispherical, flat, partially flat and truncated shaped impactor used to analyze the behavior of resistance of a GFRP composite at various speeds. The numerical analysis was carried out using finite element analysis software, ABAQUS (Dynamic/Explicit). To assess the response of the composite laminates while impacting, finite element models were developed. The Hashin failure criteria were used to represent braided glass-fiber reinforced composite plate damage. Regarding projectile shape, the impact reaction of the composite was examined. The results also show that the mechanical response of woven glass fiber polymer composite under low-velocity projectile impact largely depends on the impactor’s nose shape and the velocity of the impactor. 2023-09-24T07:48:23Z 2023-09-24T07:48:23Z 2023-06 Article 2707-7365 http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/770 en application/pdf Research and Development Wing, MIST
spellingShingle Glass fiber reinforced polymer composite, Finite element analysis (FEA), Hashin failure criteria, Low-velocity projectile impact
Chanda, Diganta
Islam, Md. Ashraful
Numerical Modeling of Low-Velocity Impact on Composite Laminates
title Numerical Modeling of Low-Velocity Impact on Composite Laminates
title_full Numerical Modeling of Low-Velocity Impact on Composite Laminates
title_fullStr Numerical Modeling of Low-Velocity Impact on Composite Laminates
title_full_unstemmed Numerical Modeling of Low-Velocity Impact on Composite Laminates
title_short Numerical Modeling of Low-Velocity Impact on Composite Laminates
title_sort numerical modeling of low velocity impact on composite laminates
topic Glass fiber reinforced polymer composite, Finite element analysis (FEA), Hashin failure criteria, Low-velocity projectile impact
url http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/770
work_keys_str_mv AT chandadiganta numericalmodelingoflowvelocityimpactoncompositelaminates
AT islammdashraful numericalmodelingoflowvelocityimpactoncompositelaminates