Laboratory Evaluation of Fatigue and Rutting Performance of Nano CaCO3 Modified Asphalt Binders
Evaluating the efficacy of Nano CaCO3 particles on amelioration of fatigue and rutting behavior of asphalt binder is the principal aim of this article. To this end, asphalt binder specimens are fabricated by incorporating various amounts of Nano CaCO3 (0.3%, 0.6%, 0.9%, and 1.2%) with asphalt binder...
Saved in:
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Semnan University
2023-08-01
|
Series: | Journal of Rehabilitation in Civil Engineering |
Subjects: | |
Online Access: | https://civiljournal.semnan.ac.ir/article_6934_30614e7580bd3caa1f94998d154b971d.pdf |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
_version_ | 1832593530942390272 |
---|---|
author | Amir Mohammad Yarahmadi Gholamali Shafabakhsh Adel Asakereh |
author_facet | Amir Mohammad Yarahmadi Gholamali Shafabakhsh Adel Asakereh |
author_sort | Amir Mohammad Yarahmadi |
collection | DOAJ |
description | Evaluating the efficacy of Nano CaCO3 particles on amelioration of fatigue and rutting behavior of asphalt binder is the principal aim of this article. To this end, asphalt binder specimens are fabricated by incorporating various amounts of Nano CaCO3 (0.3%, 0.6%, 0.9%, and 1.2%) with asphalt binder 60-70. Fatigue and rutting performance of the asphalt binder specimens are examined by implementing linear amplitude sweep and multiple stress creep recovery experiments. Results indicated that incorporating Nano CaCO3 with the asphalt binder specimens enhanced their resistance to rutting. Asphalt binder samples containing Nano CaCO3 showed higher potential for compensating the induced strains than unmodified samples. Also, by adding Nano CaCO3, the asphalt binder specimens showed improved fatigue behavior. Asphalt binder samples modified with Nano CaCO3 exhibited better behavior when subjected to cyclic loads than unmodified ones. Also in all cases, the asphalt binder specimens containing 0.9% Nano CaCO3 demonstrated the best performance. |
format | Article |
id | doaj-art-2e4595e789c04be78b806b4838804faf |
institution | Kabale University |
issn | 2345-4415 2345-4423 |
language | English |
publishDate | 2023-08-01 |
publisher | Semnan University |
record_format | Article |
series | Journal of Rehabilitation in Civil Engineering |
spelling | doaj-art-2e4595e789c04be78b806b4838804faf2025-01-20T11:34:37ZengSemnan UniversityJournal of Rehabilitation in Civil Engineering2345-44152345-44232023-08-0111314415710.22075/jrce.2022.27095.16516934Laboratory Evaluation of Fatigue and Rutting Performance of Nano CaCO3 Modified Asphalt BindersAmir Mohammad Yarahmadi0Gholamali Shafabakhsh1Adel Asakereh2M.Sc., Faculty of Civil Engineering, Semnan University, Semnan, IranProfessor, Faculty of Civil Engineering, Semnan University, Semnan, IranAssistant Professor, Faculty of Civil Engineering, Semnan University, Semnan, IranEvaluating the efficacy of Nano CaCO3 particles on amelioration of fatigue and rutting behavior of asphalt binder is the principal aim of this article. To this end, asphalt binder specimens are fabricated by incorporating various amounts of Nano CaCO3 (0.3%, 0.6%, 0.9%, and 1.2%) with asphalt binder 60-70. Fatigue and rutting performance of the asphalt binder specimens are examined by implementing linear amplitude sweep and multiple stress creep recovery experiments. Results indicated that incorporating Nano CaCO3 with the asphalt binder specimens enhanced their resistance to rutting. Asphalt binder samples containing Nano CaCO3 showed higher potential for compensating the induced strains than unmodified samples. Also, by adding Nano CaCO3, the asphalt binder specimens showed improved fatigue behavior. Asphalt binder samples modified with Nano CaCO3 exhibited better behavior when subjected to cyclic loads than unmodified ones. Also in all cases, the asphalt binder specimens containing 0.9% Nano CaCO3 demonstrated the best performance.https://civiljournal.semnan.ac.ir/article_6934_30614e7580bd3caa1f94998d154b971d.pdfasphalt bindernano caco3fatiguerutting |
spellingShingle | Amir Mohammad Yarahmadi Gholamali Shafabakhsh Adel Asakereh Laboratory Evaluation of Fatigue and Rutting Performance of Nano CaCO3 Modified Asphalt Binders Journal of Rehabilitation in Civil Engineering asphalt binder nano caco3 fatigue rutting |
title | Laboratory Evaluation of Fatigue and Rutting Performance of Nano CaCO3 Modified Asphalt Binders |
title_full | Laboratory Evaluation of Fatigue and Rutting Performance of Nano CaCO3 Modified Asphalt Binders |
title_fullStr | Laboratory Evaluation of Fatigue and Rutting Performance of Nano CaCO3 Modified Asphalt Binders |
title_full_unstemmed | Laboratory Evaluation of Fatigue and Rutting Performance of Nano CaCO3 Modified Asphalt Binders |
title_short | Laboratory Evaluation of Fatigue and Rutting Performance of Nano CaCO3 Modified Asphalt Binders |
title_sort | laboratory evaluation of fatigue and rutting performance of nano caco3 modified asphalt binders |
topic | asphalt binder nano caco3 fatigue rutting |
url | https://civiljournal.semnan.ac.ir/article_6934_30614e7580bd3caa1f94998d154b971d.pdf |
work_keys_str_mv | AT amirmohammadyarahmadi laboratoryevaluationoffatigueandruttingperformanceofnanocaco3modifiedasphaltbinders AT gholamalishafabakhsh laboratoryevaluationoffatigueandruttingperformanceofnanocaco3modifiedasphaltbinders AT adelasakereh laboratoryevaluationoffatigueandruttingperformanceofnanocaco3modifiedasphaltbinders |