Influence of recycled HDPE as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture

Rutting or permanent deformation is one of the asphalt pavement failures due to stresses caused by the traffic load pressures. This permanent deformation cause rutting failure of structure. This study was done in effort to produce durable and long service life of asphalt pavement by modify, the asph...

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Main Author: Wan Rohaya, Wan Idris
Format: Undergraduates Project Papers
Language:English
Published: 2010
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/2446/1/WAN_ROHAYA_BT_WAN_IDRIS.PDF
http://umpir.ump.edu.my/id/eprint/2446/
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spelling my.ump.umpir.24462021-06-25T03:33:34Z http://umpir.ump.edu.my/id/eprint/2446/ Influence of recycled HDPE as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture Wan Rohaya, Wan Idris TE Highway engineering. Roads and pavements Rutting or permanent deformation is one of the asphalt pavement failures due to stresses caused by the traffic load pressures. This permanent deformation cause rutting failure of structure. This study was done in effort to produce durable and long service life of asphalt pavement by modify, the asphalt with waste HDPE. The study on modification of asphalt mixture was proposed to evaluate the effect of using HDPE in pallet form as coarse aggregate replacement on 80/100 grade penetration of bitumen and also to develop optimum quality of modified asphalt mixture content H1)PE as aggregate replacement. The HDPE was used to replace coarse aggregate size between 3.3 5mm until 14mm. Bitumen content used for control specimens was in range between 4%-6%. The aggregate was replaced by HDPE pallets between 10% until 50%. From the individual graph of void, bulk density, and resilient modulus versus bitumen content, the averaged optimum bitumen content (OBC) for control asphalt mix obtained was 4.7%. This OBC value was used to produce modified specimen with waste HDPE. Three modified samples were produce for each percent of HDPE replacement. A 20 1/o coarse aggregate replacement by volume results in reduction in bulk density of 13.6%. Modified asphalt was affected by temperature which is the reduction of resilient modulus value at 20°C and 40°C was 82.5%. HDPE was found can increase the ability of asphalt mix to resist permanent if the appropriate percent of HDPE content use. In conclusion, at optimum bitumen content 4.7% and optimum HDPE content 20%, the modified asphalt mixture produce the optimum performance in form of permanent deformation behavior with the lowest strain value. 2010-11 Undergraduates Project Papers NonPeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/2446/1/WAN_ROHAYA_BT_WAN_IDRIS.PDF Wan Rohaya, Wan Idris (2010) Influence of recycled HDPE as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture. Universiti Malaysia Pahang, Faculty of Civil Engineering & Earth Resources.
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TE Highway engineering. Roads and pavements
spellingShingle TE Highway engineering. Roads and pavements
Wan Rohaya, Wan Idris
Influence of recycled HDPE as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture
description Rutting or permanent deformation is one of the asphalt pavement failures due to stresses caused by the traffic load pressures. This permanent deformation cause rutting failure of structure. This study was done in effort to produce durable and long service life of asphalt pavement by modify, the asphalt with waste HDPE. The study on modification of asphalt mixture was proposed to evaluate the effect of using HDPE in pallet form as coarse aggregate replacement on 80/100 grade penetration of bitumen and also to develop optimum quality of modified asphalt mixture content H1)PE as aggregate replacement. The HDPE was used to replace coarse aggregate size between 3.3 5mm until 14mm. Bitumen content used for control specimens was in range between 4%-6%. The aggregate was replaced by HDPE pallets between 10% until 50%. From the individual graph of void, bulk density, and resilient modulus versus bitumen content, the averaged optimum bitumen content (OBC) for control asphalt mix obtained was 4.7%. This OBC value was used to produce modified specimen with waste HDPE. Three modified samples were produce for each percent of HDPE replacement. A 20 1/o coarse aggregate replacement by volume results in reduction in bulk density of 13.6%. Modified asphalt was affected by temperature which is the reduction of resilient modulus value at 20°C and 40°C was 82.5%. HDPE was found can increase the ability of asphalt mix to resist permanent if the appropriate percent of HDPE content use. In conclusion, at optimum bitumen content 4.7% and optimum HDPE content 20%, the modified asphalt mixture produce the optimum performance in form of permanent deformation behavior with the lowest strain value.
format Undergraduates Project Papers
author Wan Rohaya, Wan Idris
author_facet Wan Rohaya, Wan Idris
author_sort Wan Rohaya, Wan Idris
title Influence of recycled HDPE as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture
title_short Influence of recycled HDPE as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture
title_full Influence of recycled HDPE as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture
title_fullStr Influence of recycled HDPE as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture
title_full_unstemmed Influence of recycled HDPE as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture
title_sort influence of recycled hdpe as partial coarse aggregate replacement on permanent deformation of modified asphalt mixture
publishDate 2010
url http://umpir.ump.edu.my/id/eprint/2446/1/WAN_ROHAYA_BT_WAN_IDRIS.PDF
http://umpir.ump.edu.my/id/eprint/2446/
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score 13.18916