STABILIZATION OF GALUNGGUNG SAND WITH CUT - BACK BITUMEN

The eruption of Galunggung mountain in 1982 resulted in the deposition of great amounts of material in the surrounding area. This created considerable concern, principally because of the likelihood of "mudflows" during the wet season. Efforts were immediately made to remove the material an...

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Main Author: Indrianto, Tri
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/2715
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:2715
spelling id-itb.:27152005-01-28T21:39:56ZSTABILIZATION OF GALUNGGUNG SAND WITH CUT - BACK BITUMEN Indrianto, Tri Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/2715 The eruption of Galunggung mountain in 1982 resulted in the deposition of great amounts of material in the surrounding area. This created considerable concern, principally because of the likelihood of "mudflows" during the wet season. Efforts were immediately made to remove the material and the Government instructed that where, possible, it should be used as a construction material. The objective of the research described in this thesis was to determine if Galunggung sand can be stabilized to meet specific criteria for road base material using a cold-mix combination of cut-back bitumen, clayey silt and water. For this purpose, several combinations of clayey silt and water were investigated. The test results indicate that, over the range investigated, increasing the clayey silt content of the mixture results in increased stability. Increase in water content results in increased stability for all levels of clayey silt content. All of the mixes investigated meet criteria fixed by THE ASPHALT INSTITUTE (1975) for sand-bitumen mixtures; the majority meet the more demanding criteria established by HARRIS et al (1983). A satisfactory mix is obtained with 5 percent residual bitumen, 9 percent clayey silt and 6 percent water. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description The eruption of Galunggung mountain in 1982 resulted in the deposition of great amounts of material in the surrounding area. This created considerable concern, principally because of the likelihood of "mudflows" during the wet season. Efforts were immediately made to remove the material and the Government instructed that where, possible, it should be used as a construction material. The objective of the research described in this thesis was to determine if Galunggung sand can be stabilized to meet specific criteria for road base material using a cold-mix combination of cut-back bitumen, clayey silt and water. For this purpose, several combinations of clayey silt and water were investigated. The test results indicate that, over the range investigated, increasing the clayey silt content of the mixture results in increased stability. Increase in water content results in increased stability for all levels of clayey silt content. All of the mixes investigated meet criteria fixed by THE ASPHALT INSTITUTE (1975) for sand-bitumen mixtures; the majority meet the more demanding criteria established by HARRIS et al (1983). A satisfactory mix is obtained with 5 percent residual bitumen, 9 percent clayey silt and 6 percent water.
format Theses
author Indrianto, Tri
spellingShingle Indrianto, Tri
STABILIZATION OF GALUNGGUNG SAND WITH CUT - BACK BITUMEN
author_facet Indrianto, Tri
author_sort Indrianto, Tri
title STABILIZATION OF GALUNGGUNG SAND WITH CUT - BACK BITUMEN
title_short STABILIZATION OF GALUNGGUNG SAND WITH CUT - BACK BITUMEN
title_full STABILIZATION OF GALUNGGUNG SAND WITH CUT - BACK BITUMEN
title_fullStr STABILIZATION OF GALUNGGUNG SAND WITH CUT - BACK BITUMEN
title_full_unstemmed STABILIZATION OF GALUNGGUNG SAND WITH CUT - BACK BITUMEN
title_sort stabilization of galunggung sand with cut - back bitumen
url https://digilib.itb.ac.id/gdl/view/2715
_version_ 1820663234465628160