Short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell

Numerous studies have been conducted to improve the performance of asphalt mixture properties in comparison with conventional mixes. One of the alternatives is utilizing waste agriculture product as additive or replacement into bitumen mixture. Coconut shell is one of the agricultural wastes that ca...

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Main Authors: Ramadhansyah, P. J., Masri, K. A., Awang, H., Satar, Mohd. Khairul Idham, Hainin, M. R., Norhidayah, A. H., Mohd. Warid, M. N., Yaacob, H., Juraidah, A.
Format: Conference or Workshop Item
Language:English
Published: 2020
Subjects:
Online Access:http://eprints.utm.my/90621/1/MohdKhairulIdham2020_ShortTermAgingEffectofAsphaltic.pdf
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author Ramadhansyah, P. J.
Masri, K. A.
Awang, H.
Satar, Mohd. Khairul Idham
Hainin, M. R.
Norhidayah, A. H.
Mohd. Warid, M. N.
Yaacob, H.
Juraidah, A.
author_facet Ramadhansyah, P. J.
Masri, K. A.
Awang, H.
Satar, Mohd. Khairul Idham
Hainin, M. R.
Norhidayah, A. H.
Mohd. Warid, M. N.
Yaacob, H.
Juraidah, A.
author_sort Ramadhansyah, P. J.
collection ePrints
description Numerous studies have been conducted to improve the performance of asphalt mixture properties in comparison with conventional mixes. One of the alternatives is utilizing waste agriculture product as additive or replacement into bitumen mixture. Coconut shell is one of the agricultural wastes that can be utilized. This paper aims to study the effect of asphaltic concrete incorporating charcoal ash from a coconut shell under short term aging condition. Charcoal coconut shell ash (CCSA) was added into a bitumen with 0%, 2%, 4%, 6%, and 8% by weight. The original CCSA was initially ground until getting the particles sizes less than 0.075mm. Laboratory simulation of aging was applied in this investigation. Marshall Stability, volumetric properties, resilient modulus, and dynamic creep test were performed to analyses asphalt mixture containing CCSA. It was observed that the addition of CCSA in asphaltic concrete gives the significant development in stability, modulus of resilient and creep stiffness. This study suggests that 4% and 6% of CBA as a supplementary binder could improve the mechanical properties of asphaltic concrete even under aging conditions.
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spelling utm.eprints-906212021-04-30T14:55:23Z http://eprints.utm.my/90621/ Short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell Ramadhansyah, P. J. Masri, K. A. Awang, H. Satar, Mohd. Khairul Idham Hainin, M. R. Norhidayah, A. H. Mohd. Warid, M. N. Yaacob, H. Juraidah, A. TA Engineering (General). Civil engineering (General) Numerous studies have been conducted to improve the performance of asphalt mixture properties in comparison with conventional mixes. One of the alternatives is utilizing waste agriculture product as additive or replacement into bitumen mixture. Coconut shell is one of the agricultural wastes that can be utilized. This paper aims to study the effect of asphaltic concrete incorporating charcoal ash from a coconut shell under short term aging condition. Charcoal coconut shell ash (CCSA) was added into a bitumen with 0%, 2%, 4%, 6%, and 8% by weight. The original CCSA was initially ground until getting the particles sizes less than 0.075mm. Laboratory simulation of aging was applied in this investigation. Marshall Stability, volumetric properties, resilient modulus, and dynamic creep test were performed to analyses asphalt mixture containing CCSA. It was observed that the addition of CCSA in asphaltic concrete gives the significant development in stability, modulus of resilient and creep stiffness. This study suggests that 4% and 6% of CBA as a supplementary binder could improve the mechanical properties of asphaltic concrete even under aging conditions. 2020-01-03 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/90621/1/MohdKhairulIdham2020_ShortTermAgingEffectofAsphaltic.pdf Ramadhansyah, P. J. and Masri, K. A. and Awang, H. and Satar, Mohd. Khairul Idham and Hainin, M. R. and Norhidayah, A. H. and Mohd. Warid, M. N. and Yaacob, H. and Juraidah, A. (2020) Short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell. In: 3rd National Conference on Wind and Earthquake Engineering, NCWE 2019 and International Seminar on Sustainable Construction Engineering, ISCCE 2019, 12 July 2019 - 13 July 2019, Kuala Lumpur, Malaysia. http://dx.doi.org/10.1088/1757-899X/712/1/012036
spellingShingle TA Engineering (General). Civil engineering (General)
Ramadhansyah, P. J.
Masri, K. A.
Awang, H.
Satar, Mohd. Khairul Idham
Hainin, M. R.
Norhidayah, A. H.
Mohd. Warid, M. N.
Yaacob, H.
Juraidah, A.
Short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell
title Short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell
title_full Short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell
title_fullStr Short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell
title_full_unstemmed Short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell
title_short Short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell
title_sort short term aging effect of asphaltic concrete incorporating charcoal ash from coconut shell
topic TA Engineering (General). Civil engineering (General)
url http://eprints.utm.my/90621/1/MohdKhairulIdham2020_ShortTermAgingEffectofAsphaltic.pdf
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