Numerical Simulation on the Statics Deformation Study of Composite Cross Arms of Different Materials and Configurations

This study focuses on the deformation of cross arms made from composite material under static loading. Two materials properties of fiberglass with are assigned to the cross arms model and it is subjected to a load at the one end of the cross arms. A bracing support is then installed, and the deforma...

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Main Authors: Mohamad, D., Syamsir, A., Itam, Z., Bakar, H.A., Abas, A., Ng, F.C., Razali, M.F., Seman, S.A.H.A.
Format: Conference Paper
Language:English
Published: 2020
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Institution: Universiti Tenaga Nasional
Language: English
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spelling my.uniten.dspace-131942020-08-18T08:28:02Z Numerical Simulation on the Statics Deformation Study of Composite Cross Arms of Different Materials and Configurations Mohamad, D. Syamsir, A. Itam, Z. Bakar, H.A. Abas, A. Ng, F.C. Razali, M.F. Seman, S.A.H.A. This study focuses on the deformation of cross arms made from composite material under static loading. Two materials properties of fiberglass with are assigned to the cross arms model and it is subjected to a load at the one end of the cross arms. A bracing support is then installed, and the deformation and stress experienced by the cross arms are observed and compared with the case where no bracing support is used. The results obtained show that material B has lower deformation value, but experienced greater stress compared to material A. The bracing managed to reduce the total deformation by about 12% and 20% for material A and B respectively. The reduction of stresses experienced by the cross arms ranges from 4% to 30%. © 2019 IOP Publishing Ltd. All rights reserved. 2020-02-03T03:31:00Z 2020-02-03T03:31:00Z 2019-06 Conference Paper 10.1088/1757-899X/530/1/012028 en
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/
language English
description This study focuses on the deformation of cross arms made from composite material under static loading. Two materials properties of fiberglass with are assigned to the cross arms model and it is subjected to a load at the one end of the cross arms. A bracing support is then installed, and the deformation and stress experienced by the cross arms are observed and compared with the case where no bracing support is used. The results obtained show that material B has lower deformation value, but experienced greater stress compared to material A. The bracing managed to reduce the total deformation by about 12% and 20% for material A and B respectively. The reduction of stresses experienced by the cross arms ranges from 4% to 30%. © 2019 IOP Publishing Ltd. All rights reserved.
format Conference Paper
author Mohamad, D.
Syamsir, A.
Itam, Z.
Bakar, H.A.
Abas, A.
Ng, F.C.
Razali, M.F.
Seman, S.A.H.A.
spellingShingle Mohamad, D.
Syamsir, A.
Itam, Z.
Bakar, H.A.
Abas, A.
Ng, F.C.
Razali, M.F.
Seman, S.A.H.A.
Numerical Simulation on the Statics Deformation Study of Composite Cross Arms of Different Materials and Configurations
author_facet Mohamad, D.
Syamsir, A.
Itam, Z.
Bakar, H.A.
Abas, A.
Ng, F.C.
Razali, M.F.
Seman, S.A.H.A.
author_sort Mohamad, D.
title Numerical Simulation on the Statics Deformation Study of Composite Cross Arms of Different Materials and Configurations
title_short Numerical Simulation on the Statics Deformation Study of Composite Cross Arms of Different Materials and Configurations
title_full Numerical Simulation on the Statics Deformation Study of Composite Cross Arms of Different Materials and Configurations
title_fullStr Numerical Simulation on the Statics Deformation Study of Composite Cross Arms of Different Materials and Configurations
title_full_unstemmed Numerical Simulation on the Statics Deformation Study of Composite Cross Arms of Different Materials and Configurations
title_sort numerical simulation on the statics deformation study of composite cross arms of different materials and configurations
publishDate 2020
_version_ 1678595894553870336