The Use of Dumoga River Sand Material on Stone Ash Material in AC-Base and Semi-Gap Graded HRS-WC Mixtures
International Journal of Civil Engineering |
© 2022 by SSRG - IJCE Journal |
Volume 9 Issue 1 |
Year of Publication : 2022 |
Authors : Mecky R.E. Manoppo, Joice E. Waani, Meike Kumaat |
How to Cite?
Mecky R.E. Manoppo, Joice E. Waani, Meike Kumaat, "The Use of Dumoga River Sand Material on Stone Ash Material in AC-Base and Semi-Gap Graded HRS-WC Mixtures," SSRG International Journal of Civil Engineering, vol. 9, no. 1, pp. 15-24, 2022. Crossref, https://doi.org/10.14445/23488352/IJCE-V9I1P103
Abstract:
This study aims to reduce the use of stone ash (fine aggregate) in a mixture of AC-Base and semi-gap graded HRS-WC by utilizing Dumoga river sand as fine aggregate.
The research was carried out by making 3 variations for aggregate (combined graded aggregate) by trial and error for each mixture of AC-Base and semi-gap graded HRS-WC. The asphalt used was 5.5 %, 6%, 6.5% for the mixture of AC-Base and 6%, 6.5%, 7% for the mixture of semi-gap graded HRS-WC.
The results obtained under the Marshall criteria for the use of Dumoga sand in the AC Base mixture, namely in variation 2 with 6% asphalt content, generate a Stability value of 1971.82 kg, Flow 3.75 mm, VIM 4.%, VMA 14.25%, and VFB 74.09%. Then the semi-gap graded HRS-WC mixture using Dumoga sand, namely in variation 2 with an asphalt content of 6.5%, generates a Stability value of 1288.3 kg, Flow 3.31 mm, VIM 4.83%, VMA 23.25%, and VFB 71.54%. These results indicate that Dumoga sand material can be used in AC-Base mixtures up to 15% and up to 35% in semi-gap graded HRS-WC mixtures.
Keywords:
AC-Base, Dumoga Sand, Semi-gap Graded HRS-WC, Stone Ash.
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