Investigation of the Effect of Yarn Waste Fibers and Cocamide Diethanolamide Chemical on the Strength of Hot Mix Asphalt

In this study, conventional bitumen test were performed on bituminous binder modified with Cocamide Diethanolamide chemical at different ratios. According to results of tests, the most suitable additive ratio has been determined as 5%. However, it was concluded that indirect tensile strength and re...

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Main Authors: Mehmet Saltan, Gizem Kaçaroğlu, Öznur Karadağ
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2022-09-01
Series:Fracture and Structural Integrity
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Online Access:https://www.fracturae.com/index.php/fis/article/view/3530
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author Mehmet Saltan
Gizem Kaçaroğlu
Öznur Karadağ
author_facet Mehmet Saltan
Gizem Kaçaroğlu
Öznur Karadağ
author_sort Mehmet Saltan
collection DOAJ
description In this study, conventional bitumen test were performed on bituminous binder modified with Cocamide Diethanolamide chemical at different ratios. According to results of tests, the most suitable additive ratio has been determined as 5%. However, it was concluded that indirect tensile strength and resistance to moisture of samples prepared with bituminous binder modified with 5% Cocamide Diethanolamide has been adversely affected. It was desired to investigate that whether these properties could be strengthened by yarn waste fibers. Firstly, the effect of 0.1%, 0.2% and 0.3% yarn waste fibers on samples prepared with reference bituminous binder was investigated. Obtained results showed that both indirect tensile strength and resistance to moisture of samples containing 0.1% yarn waste fiber increased. Therefore, 0.1%, 0.2% and 0.3% yarn waste fibers were added to the aggregate mixture and mixing of them with bituminous binder modified with 5% Cocamide Diethanolamide were provided. According to obtained results, different ratios of yarn waste fibers added to aggregate mixture did not have a positive effect on moisture sensitivity. Tensile strength ratio values of samples containing bituminous binder modified with 5% Cocamide Diethanolamide and yarn waste fibers added to the aggregate mixture did not provide specification limit.
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institution Kabale University
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publishDate 2022-09-01
publisher Gruppo Italiano Frattura
record_format Article
series Fracture and Structural Integrity
spelling doaj-art-2f768862c27c4b38b95d8f65356fa78e2025-02-03T10:34:52ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932022-09-011662Investigation of the Effect of Yarn Waste Fibers and Cocamide Diethanolamide Chemical on the Strength of Hot Mix AsphaltMehmet Saltan0Gizem Kaçaroğlu1Öznur Karadağ2Suleyman Demirel University, TurkeySuleyman Demirel University, TurkeySuleyman Demirel University, Turkey In this study, conventional bitumen test were performed on bituminous binder modified with Cocamide Diethanolamide chemical at different ratios. According to results of tests, the most suitable additive ratio has been determined as 5%. However, it was concluded that indirect tensile strength and resistance to moisture of samples prepared with bituminous binder modified with 5% Cocamide Diethanolamide has been adversely affected. It was desired to investigate that whether these properties could be strengthened by yarn waste fibers. Firstly, the effect of 0.1%, 0.2% and 0.3% yarn waste fibers on samples prepared with reference bituminous binder was investigated. Obtained results showed that both indirect tensile strength and resistance to moisture of samples containing 0.1% yarn waste fiber increased. Therefore, 0.1%, 0.2% and 0.3% yarn waste fibers were added to the aggregate mixture and mixing of them with bituminous binder modified with 5% Cocamide Diethanolamide were provided. According to obtained results, different ratios of yarn waste fibers added to aggregate mixture did not have a positive effect on moisture sensitivity. Tensile strength ratio values of samples containing bituminous binder modified with 5% Cocamide Diethanolamide and yarn waste fibers added to the aggregate mixture did not provide specification limit. https://www.fracturae.com/index.php/fis/article/view/3530Cocamide DiethanolamideYarn waste fiberSuperpaveMoisture Sensitivity
spellingShingle Mehmet Saltan
Gizem Kaçaroğlu
Öznur Karadağ
Investigation of the Effect of Yarn Waste Fibers and Cocamide Diethanolamide Chemical on the Strength of Hot Mix Asphalt
Fracture and Structural Integrity
Cocamide Diethanolamide
Yarn waste fiber
Superpave
Moisture Sensitivity
title Investigation of the Effect of Yarn Waste Fibers and Cocamide Diethanolamide Chemical on the Strength of Hot Mix Asphalt
title_full Investigation of the Effect of Yarn Waste Fibers and Cocamide Diethanolamide Chemical on the Strength of Hot Mix Asphalt
title_fullStr Investigation of the Effect of Yarn Waste Fibers and Cocamide Diethanolamide Chemical on the Strength of Hot Mix Asphalt
title_full_unstemmed Investigation of the Effect of Yarn Waste Fibers and Cocamide Diethanolamide Chemical on the Strength of Hot Mix Asphalt
title_short Investigation of the Effect of Yarn Waste Fibers and Cocamide Diethanolamide Chemical on the Strength of Hot Mix Asphalt
title_sort investigation of the effect of yarn waste fibers and cocamide diethanolamide chemical on the strength of hot mix asphalt
topic Cocamide Diethanolamide
Yarn waste fiber
Superpave
Moisture Sensitivity
url https://www.fracturae.com/index.php/fis/article/view/3530
work_keys_str_mv AT mehmetsaltan investigationoftheeffectofyarnwastefibersandcocamidediethanolamidechemicalonthestrengthofhotmixasphalt
AT gizemkacaroglu investigationoftheeffectofyarnwastefibersandcocamidediethanolamidechemicalonthestrengthofhotmixasphalt
AT oznurkaradag investigationoftheeffectofyarnwastefibersandcocamidediethanolamidechemicalonthestrengthofhotmixasphalt