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The Rejuvenating Effect in Hot Asphalt Recycling by Mortar Transfer Ratio and Image Analysis

Using a rejuvenator to improve the performance of asphalt pavement is an effective and economic way of hot asphalt recycling. This research analyzes the rejuvenating effect on aged asphalt by means of a Mortar Transfer Ratio (MTR) test, which concerns the ratio of asphalt mortar that moves from recy...

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Autores principales: Wang, Fusong, Wang, Zipeng, Li, Chao, Xiao, Yue, Wu, Shaopeng, Pan, Pan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5552081/
https://www.ncbi.nlm.nih.gov/pubmed/28772935
http://dx.doi.org/10.3390/ma10060574
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author Wang, Fusong
Wang, Zipeng
Li, Chao
Xiao, Yue
Wu, Shaopeng
Pan, Pan
author_facet Wang, Fusong
Wang, Zipeng
Li, Chao
Xiao, Yue
Wu, Shaopeng
Pan, Pan
author_sort Wang, Fusong
collection PubMed
description Using a rejuvenator to improve the performance of asphalt pavement is an effective and economic way of hot asphalt recycling. This research analyzes the rejuvenating effect on aged asphalt by means of a Mortar Transfer Ratio (MTR) test, which concerns the ratio of asphalt mortar that moves from recycled aggregates (RAP aggregates) to fresh added aggregates when aged asphalt is treated with a regenerating agent and comes into contact with fresh aggregates. The proposed MTR test analyzes the regeneration in terms of the softening degree on aged asphalt when the rejuvenator is applied. The covered area ratio is studied with an image analyzing tool to understand the possibility of mortar transferring from RAP aggregates to fresh aggregates. Additionally, a micro-crack closure test is conducted and observed through a microscope. The repairing ability and diffusion characteristics of micro-cracks can therefore be analyzed. The test results demonstrate that the proposed mortar transfer ratio is a feasible way to evaluate rejuvenator diffusion during hot recycling. The mortar transfer ratio and uncovered area ratio on fresh aggregates are compatible, and can be used to quantify the contribution of the rejuvenator. Within a certain temperature range, the diffusing effect of the rejuvenator is better when the diffusing temperature is higher. The diffusion time of the rejuvenator is optimum when diffusion occurs for 4–8 h. When the rejuvenator is properly applied, the rough and cracking surface can be repaired, resulting in better covered aggregates. The micro-closure analysis visually indicates that rejuvenators can be used to repair the RAP aggregates during hot recycling.
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spelling pubmed-55520812017-08-14 The Rejuvenating Effect in Hot Asphalt Recycling by Mortar Transfer Ratio and Image Analysis Wang, Fusong Wang, Zipeng Li, Chao Xiao, Yue Wu, Shaopeng Pan, Pan Materials (Basel) Article Using a rejuvenator to improve the performance of asphalt pavement is an effective and economic way of hot asphalt recycling. This research analyzes the rejuvenating effect on aged asphalt by means of a Mortar Transfer Ratio (MTR) test, which concerns the ratio of asphalt mortar that moves from recycled aggregates (RAP aggregates) to fresh added aggregates when aged asphalt is treated with a regenerating agent and comes into contact with fresh aggregates. The proposed MTR test analyzes the regeneration in terms of the softening degree on aged asphalt when the rejuvenator is applied. The covered area ratio is studied with an image analyzing tool to understand the possibility of mortar transferring from RAP aggregates to fresh aggregates. Additionally, a micro-crack closure test is conducted and observed through a microscope. The repairing ability and diffusion characteristics of micro-cracks can therefore be analyzed. The test results demonstrate that the proposed mortar transfer ratio is a feasible way to evaluate rejuvenator diffusion during hot recycling. The mortar transfer ratio and uncovered area ratio on fresh aggregates are compatible, and can be used to quantify the contribution of the rejuvenator. Within a certain temperature range, the diffusing effect of the rejuvenator is better when the diffusing temperature is higher. The diffusion time of the rejuvenator is optimum when diffusion occurs for 4–8 h. When the rejuvenator is properly applied, the rough and cracking surface can be repaired, resulting in better covered aggregates. The micro-closure analysis visually indicates that rejuvenators can be used to repair the RAP aggregates during hot recycling. MDPI 2017-05-24 /pmc/articles/PMC5552081/ /pubmed/28772935 http://dx.doi.org/10.3390/ma10060574 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Fusong
Wang, Zipeng
Li, Chao
Xiao, Yue
Wu, Shaopeng
Pan, Pan
The Rejuvenating Effect in Hot Asphalt Recycling by Mortar Transfer Ratio and Image Analysis
title The Rejuvenating Effect in Hot Asphalt Recycling by Mortar Transfer Ratio and Image Analysis
title_full The Rejuvenating Effect in Hot Asphalt Recycling by Mortar Transfer Ratio and Image Analysis
title_fullStr The Rejuvenating Effect in Hot Asphalt Recycling by Mortar Transfer Ratio and Image Analysis
title_full_unstemmed The Rejuvenating Effect in Hot Asphalt Recycling by Mortar Transfer Ratio and Image Analysis
title_short The Rejuvenating Effect in Hot Asphalt Recycling by Mortar Transfer Ratio and Image Analysis
title_sort rejuvenating effect in hot asphalt recycling by mortar transfer ratio and image analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5552081/
https://www.ncbi.nlm.nih.gov/pubmed/28772935
http://dx.doi.org/10.3390/ma10060574
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