Determination of impact damage severity level in Sheet Molding Compound composite material using thermography method - A preliminary study

The need of better materials for rad-waste applications has led to the utilization of composite materials as one of the candidate materials for the storage container. One of the materials properties needed to be understood is an impact strength. This work highlights the study of damage severity leve...

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Main Authors: Mohamed A.A., Disele T.L., Ahmad I., Mohd S.
Other Authors: 57190936088
Format: Conference Paper
Published: American Institute of Physics Inc. 2023
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spelling my.uniten.dspace-223532023-05-29T14:00:25Z Determination of impact damage severity level in Sheet Molding Compound composite material using thermography method - A preliminary study Mohamed A.A. Disele T.L. Ahmad I. Mohd S. 57190936088 57192099497 12792216600 56500279500 The need of better materials for rad-waste applications has led to the utilization of composite materials as one of the candidate materials for the storage container. One of the materials properties needed to be understood is an impact strength. This work highlights the study of damage severity levels in a Sheet Molding Compound (SMC) composite due to impact forces. The damage levels were measured by using a thermography method. The impact forces applied to test samples were in a range of 9.81J to 78.475J. It found that wide range of temperature contours observed as the level of the damage severity increased. � 2015 AIP Publishing LLC. Final 2023-05-29T06:00:25Z 2023-05-29T06:00:25Z 2015 Conference Paper 10.1063/1.4916868 2-s2.0-84997217106 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84997217106&doi=10.1063%2f1.4916868&partnerID=40&md5=01dd5984b74eee92a291c541a28e7b9b https://irepository.uniten.edu.my/handle/123456789/22353 1659 40008 American Institute of Physics Inc. Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description The need of better materials for rad-waste applications has led to the utilization of composite materials as one of the candidate materials for the storage container. One of the materials properties needed to be understood is an impact strength. This work highlights the study of damage severity levels in a Sheet Molding Compound (SMC) composite due to impact forces. The damage levels were measured by using a thermography method. The impact forces applied to test samples were in a range of 9.81J to 78.475J. It found that wide range of temperature contours observed as the level of the damage severity increased. � 2015 AIP Publishing LLC.
author2 57190936088
author_facet 57190936088
Mohamed A.A.
Disele T.L.
Ahmad I.
Mohd S.
format Conference Paper
author Mohamed A.A.
Disele T.L.
Ahmad I.
Mohd S.
spellingShingle Mohamed A.A.
Disele T.L.
Ahmad I.
Mohd S.
Determination of impact damage severity level in Sheet Molding Compound composite material using thermography method - A preliminary study
author_sort Mohamed A.A.
title Determination of impact damage severity level in Sheet Molding Compound composite material using thermography method - A preliminary study
title_short Determination of impact damage severity level in Sheet Molding Compound composite material using thermography method - A preliminary study
title_full Determination of impact damage severity level in Sheet Molding Compound composite material using thermography method - A preliminary study
title_fullStr Determination of impact damage severity level in Sheet Molding Compound composite material using thermography method - A preliminary study
title_full_unstemmed Determination of impact damage severity level in Sheet Molding Compound composite material using thermography method - A preliminary study
title_sort determination of impact damage severity level in sheet molding compound composite material using thermography method - a preliminary study
publisher American Institute of Physics Inc.
publishDate 2023
_version_ 1806427369606479872
score 13.222552