Javascript must be enabled to continue!
Utilisation of Reclaimed Asphalt Pavement for Improving Substandard Subbase
View through CrossRef
This research attempted to improve substandard subbase by mixing it with reclaimed asphalt pavement. Three substandard soils, namely Soils A, B, C, and RAP, were collected from Phangnga, Southern Thailand. Each soil was mixed with the RAP having the soil to RAP by-weight ratios of 100:0, 90:10, 80:20, 70:30, 60:40, and 50:50. A whole RAP, namely sample D, was also studied, resulting in a total of 19 soil-RAP mixtures. Several testing techniques were carried out to obtain the best mixture for being employed as a subbase. Besides basic properties, the compaction test was conducted to obtain optimum water content. Consequently, such water was employed to prepare samples for the CBR test. Considering overall compaction behaviour, it was found that the maximum dry density gradually increases with the increase of RAP content from 0% up to 30%. After that, it decreased steadily with further increases in RAP from 40% to 50%. Strikingly, all soils had the maximum dry densities when mixed with 30% RAP. As such, the CBR results unsurprisingly showed the same trend, i.e., the maximum values occurred when the mixtures contained 30% RAP. The CBR values for the samples A70R30, B70R30, and C70R30 were 11.0%, 15.9%, and 25.1%, respectively. This indicates that only soil C mixed with 30% RAP qualifies for subbase. These results suggest that 30% of RAP is the most appropriate portion to be mixed with substandard subbase soil to achieve a qualified subbase.
Title: Utilisation of Reclaimed Asphalt Pavement for Improving Substandard Subbase
Description:
This research attempted to improve substandard subbase by mixing it with reclaimed asphalt pavement.
Three substandard soils, namely Soils A, B, C, and RAP, were collected from Phangnga, Southern Thailand.
Each soil was mixed with the RAP having the soil to RAP by-weight ratios of 100:0, 90:10, 80:20, 70:30, 60:40, and 50:50.
A whole RAP, namely sample D, was also studied, resulting in a total of 19 soil-RAP mixtures.
Several testing techniques were carried out to obtain the best mixture for being employed as a subbase.
Besides basic properties, the compaction test was conducted to obtain optimum water content.
Consequently, such water was employed to prepare samples for the CBR test.
Considering overall compaction behaviour, it was found that the maximum dry density gradually increases with the increase of RAP content from 0% up to 30%.
After that, it decreased steadily with further increases in RAP from 40% to 50%.
Strikingly, all soils had the maximum dry densities when mixed with 30% RAP.
As such, the CBR results unsurprisingly showed the same trend, i.
e.
, the maximum values occurred when the mixtures contained 30% RAP.
The CBR values for the samples A70R30, B70R30, and C70R30 were 11.
0%, 15.
9%, and 25.
1%, respectively.
This indicates that only soil C mixed with 30% RAP qualifies for subbase.
These results suggest that 30% of RAP is the most appropriate portion to be mixed with substandard subbase soil to achieve a qualified subbase.
Related Results
Modification Mechanism and Performance of Qingchuan Rock Asphalt–Modified Asphalt
Modification Mechanism and Performance of Qingchuan Rock Asphalt–Modified Asphalt
Abstract
Using Esso AH-70 asphalt as the base asphalt, the modification mechanism for Qingchuan rock asphalt–modified asphalt was studied using asphalt component tes...
Towards advanced sustainable technologies for asphalt pavement materials
Towards advanced sustainable technologies for asphalt pavement materials
The transportation sector remains one of the largest contributors to the greenhouse gas emissions in the United States, per economic sector, accounting for 28 percent of the total ...
The Development of a New Thermoplastic Elastomer (TPE)-Modified Asphalt
The Development of a New Thermoplastic Elastomer (TPE)-Modified Asphalt
The use of (recycled) plastics and (waste) vulcanized rubber powder is the main polymer of raw materials, and composite organic additives are selected to fully combine with asphalt...
DAUR ULANG RECLAIMED ASPHALT PAVEMENT SEBAGAI BAHAN UTAMA CAMPURAN BETON ASPAL EMULSI UNTUK LAPIS PERMUKAAN
DAUR ULANG RECLAIMED ASPHALT PAVEMENT SEBAGAI BAHAN UTAMA CAMPURAN BETON ASPAL EMULSI UNTUK LAPIS PERMUKAAN
ABSTRACTReclaimed Asphalt Pavement (RAP) material as a result of road maintenance by Scrapping-Filling-Overlay method is a waste material which had potential to be recovered as a s...
Rheological and Rutting Characterization of Asphalt Mixes with Modified Binders
Rheological and Rutting Characterization of Asphalt Mixes with Modified Binders
Abstract
This paper presents the results of investigations on the rheological properties of modified asphalt binders and their influence on the performance of asphal...
Dynamic Strain Response of Hot-Recycled Asphalt Pavement under Dual-Axle Accelerated Loading Conditions
Dynamic Strain Response of Hot-Recycled Asphalt Pavement under Dual-Axle Accelerated Loading Conditions
Accelerated pavement testing (APT) is an effective method to study the long-term performance of pavement. Therefore, the dynamic strain behavior analysis of asphalt pavement has im...
Factors Influencing the Leaching of Asphalt Components
Factors Influencing the Leaching of Asphalt Components
Abstract
The main applications of asphalt involve the coating of surfaces, e.g., in roads, roofs, pipes, and linings of water basins. In all of these applications, a...

