Numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally

The composite hybrid pipe is a novel structure made of concentric composite multilayer possess improved thermal and mechanical properties better than its original components. At variance experimental analysis, the numerical studies on the structure and behavior of composite hybrid natural fiber rein...

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Main Authors: Almula, T. A. D. M. S., Khuder, A. H., Yahya, M. Y., Ayob, A.
Format: Conference or Workshop Item
Language:English
Published: 2019
Subjects:
Online Access:http://eprints.utm.my/92683/1/AmranAyob2019_NumericalInvestigationofHybridofEglass.pdf
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author Almula, T. A. D. M. S.
Khuder, A. H.
Yahya, M. Y.
Ayob, A.
author_facet Almula, T. A. D. M. S.
Khuder, A. H.
Yahya, M. Y.
Ayob, A.
author_sort Almula, T. A. D. M. S.
collection ePrints
description The composite hybrid pipe is a novel structure made of concentric composite multilayer possess improved thermal and mechanical properties better than its original components. At variance experimental analysis, the numerical studies on the structure and behavior of composite hybrid natural fiber reinforced epoxy pipe materials pressurized internally seem lacking. In this study, numerical analysis was carried out for three different stacking plies of composite hybrid natural fiber ±55° basalt and Eglass fiber reinforced epoxy tube which was tested under the subjection for three modes of applied load, the hoop and longitudinal tensile tested as well as subjection under biaxial internal pressures load in accordance to ASTM's standard to investigate the mechanical behavior and the optimal configuration among them. Also, analyzed the comparable three types of hybrid natural fiber (basalt)/Eglass reinforced epoxy with pure ±55° Eglass reinforced epoxy and pure ±55° basalt reinforced epoxy numerically to predict the performance for the hybrid over the pure E-glass and basalt fiber reinforced epoxy composite pipe as a good replacement to meet the different demand of applications in the pressure pipelines. Also The three stacking plies types of hybrid composite pipes were compared with the pure E-glass and basalt fiber reinforced epoxy pipes. All samples were fabricated using a dry filament wound CNC machine with ±55° orientation angle, then infused with epoxy resin using vacuum infusion procedure (VIP). Numerical analysis was carried out using finite element commercial code ANSYS V14.
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spelling utm.eprints-926832021-10-28T10:09:54Z http://eprints.utm.my/92683/ Numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally Almula, T. A. D. M. S. Khuder, A. H. Yahya, M. Y. Ayob, A. TJ Mechanical engineering and machinery The composite hybrid pipe is a novel structure made of concentric composite multilayer possess improved thermal and mechanical properties better than its original components. At variance experimental analysis, the numerical studies on the structure and behavior of composite hybrid natural fiber reinforced epoxy pipe materials pressurized internally seem lacking. In this study, numerical analysis was carried out for three different stacking plies of composite hybrid natural fiber ±55° basalt and Eglass fiber reinforced epoxy tube which was tested under the subjection for three modes of applied load, the hoop and longitudinal tensile tested as well as subjection under biaxial internal pressures load in accordance to ASTM's standard to investigate the mechanical behavior and the optimal configuration among them. Also, analyzed the comparable three types of hybrid natural fiber (basalt)/Eglass reinforced epoxy with pure ±55° Eglass reinforced epoxy and pure ±55° basalt reinforced epoxy numerically to predict the performance for the hybrid over the pure E-glass and basalt fiber reinforced epoxy composite pipe as a good replacement to meet the different demand of applications in the pressure pipelines. Also The three stacking plies types of hybrid composite pipes were compared with the pure E-glass and basalt fiber reinforced epoxy pipes. All samples were fabricated using a dry filament wound CNC machine with ±55° orientation angle, then infused with epoxy resin using vacuum infusion procedure (VIP). Numerical analysis was carried out using finite element commercial code ANSYS V14. 2019 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/92683/1/AmranAyob2019_NumericalInvestigationofHybridofEglass.pdf Almula, T. A. D. M. S. and Khuder, A. H. and Yahya, M. Y. and Ayob, A. (2019) Numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally. In: 2019 2nd International Conference on Aeronautical, Aerospace and Mechanical Engineering, AAME 2019, 26-28 July 2019, Prague, Czech Republic. http://dx.doi.org/10.1088/1757-899X/638/1/012012 DOI: 10.1088/1757-899X/638/1/012012
spellingShingle TJ Mechanical engineering and machinery
Almula, T. A. D. M. S.
Khuder, A. H.
Yahya, M. Y.
Ayob, A.
Numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally
title Numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally
title_full Numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally
title_fullStr Numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally
title_full_unstemmed Numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally
title_short Numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally
title_sort numerical investigation of hybrid of eglass and basalt fiber reinforced epoxy tube pressurized internally
topic TJ Mechanical engineering and machinery
url http://eprints.utm.my/92683/1/AmranAyob2019_NumericalInvestigationofHybridofEglass.pdf
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AT khuderah numericalinvestigationofhybridofeglassandbasaltfiberreinforcedepoxytubepressurizedinternally
AT yahyamy numericalinvestigationofhybridofeglassandbasaltfiberreinforcedepoxytubepressurizedinternally
AT ayoba numericalinvestigationofhybridofeglassandbasaltfiberreinforcedepoxytubepressurizedinternally