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Development and Performance Evaluation of a High-Permeability and High-Bonding Fog-Sealing Adhesive Material

Herein, the effects of the contents of emulsified asphalt, waterborne epoxy resin emulsion, and curing agent on the permeability, bond shear strength, water stability, and aging resistance of epoxy-emulsified asphalt were studied. A formulation of epoxy-emulsified asphalt as a fog-sealing adhesive m...

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Autores principales: Tian, Tian, Jiang, Yingjun, Fan, Jiangtao, Yi, Yong, Deng, Changqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269687/
https://www.ncbi.nlm.nih.gov/pubmed/34203216
http://dx.doi.org/10.3390/ma14133599
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author Tian, Tian
Jiang, Yingjun
Fan, Jiangtao
Yi, Yong
Deng, Changqing
author_facet Tian, Tian
Jiang, Yingjun
Fan, Jiangtao
Yi, Yong
Deng, Changqing
author_sort Tian, Tian
collection PubMed
description Herein, the effects of the contents of emulsified asphalt, waterborne epoxy resin emulsion, and curing agent on the permeability, bond shear strength, water stability, and aging resistance of epoxy-emulsified asphalt were studied. A formulation of epoxy-emulsified asphalt as a fog-sealing adhesive material was recommended, and a comparison between the fabricated adhesive material and a traditional Chinese fog-sealing adhesive material was conducted to verify the technical performance of the new material. In addition, the strength formation mechanism of the epoxy-emulsified asphalt was revealed via microcosmic analysis. Results show that the curing agent content mainly affects the permeability of epoxy-emulsified asphalt, and the emulsified asphalt content significantly affects the bond shear strength, water stability, and aging resistance. Moreover, the ratio of waterborne epoxy resin emulsion to the curing agent (epoxy ratio) has a certain effect on the bond shear strength. In the recommended formulation (a high-permeability and high-bonding fog-sealing adhesive material, which can be referred to simply as HPBFA), emulsified asphalt accounts for 80% of the total mass of the mixture, and the epoxy ratio is 2:1–3:1. It can improve air permeability, bond shear strength, water stability and aging resistance. The HPBFA-cured material exhibits a continuous three-dimensional network structure, hydrophobic surface, and large contact angle. Furthermore, the initial thermal weight loss temperature of the HPBFA-cured material is significantly higher than the environmental aging temperature. Additionally, the maximum temperature decomposition range is 0–160 °C, indicating improved strength, wear resistance, permeability, and aging resistance of the material.
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spelling pubmed-82696872021-07-10 Development and Performance Evaluation of a High-Permeability and High-Bonding Fog-Sealing Adhesive Material Tian, Tian Jiang, Yingjun Fan, Jiangtao Yi, Yong Deng, Changqing Materials (Basel) Article Herein, the effects of the contents of emulsified asphalt, waterborne epoxy resin emulsion, and curing agent on the permeability, bond shear strength, water stability, and aging resistance of epoxy-emulsified asphalt were studied. A formulation of epoxy-emulsified asphalt as a fog-sealing adhesive material was recommended, and a comparison between the fabricated adhesive material and a traditional Chinese fog-sealing adhesive material was conducted to verify the technical performance of the new material. In addition, the strength formation mechanism of the epoxy-emulsified asphalt was revealed via microcosmic analysis. Results show that the curing agent content mainly affects the permeability of epoxy-emulsified asphalt, and the emulsified asphalt content significantly affects the bond shear strength, water stability, and aging resistance. Moreover, the ratio of waterborne epoxy resin emulsion to the curing agent (epoxy ratio) has a certain effect on the bond shear strength. In the recommended formulation (a high-permeability and high-bonding fog-sealing adhesive material, which can be referred to simply as HPBFA), emulsified asphalt accounts for 80% of the total mass of the mixture, and the epoxy ratio is 2:1–3:1. It can improve air permeability, bond shear strength, water stability and aging resistance. The HPBFA-cured material exhibits a continuous three-dimensional network structure, hydrophobic surface, and large contact angle. Furthermore, the initial thermal weight loss temperature of the HPBFA-cured material is significantly higher than the environmental aging temperature. Additionally, the maximum temperature decomposition range is 0–160 °C, indicating improved strength, wear resistance, permeability, and aging resistance of the material. MDPI 2021-06-28 /pmc/articles/PMC8269687/ /pubmed/34203216 http://dx.doi.org/10.3390/ma14133599 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tian, Tian
Jiang, Yingjun
Fan, Jiangtao
Yi, Yong
Deng, Changqing
Development and Performance Evaluation of a High-Permeability and High-Bonding Fog-Sealing Adhesive Material
title Development and Performance Evaluation of a High-Permeability and High-Bonding Fog-Sealing Adhesive Material
title_full Development and Performance Evaluation of a High-Permeability and High-Bonding Fog-Sealing Adhesive Material
title_fullStr Development and Performance Evaluation of a High-Permeability and High-Bonding Fog-Sealing Adhesive Material
title_full_unstemmed Development and Performance Evaluation of a High-Permeability and High-Bonding Fog-Sealing Adhesive Material
title_short Development and Performance Evaluation of a High-Permeability and High-Bonding Fog-Sealing Adhesive Material
title_sort development and performance evaluation of a high-permeability and high-bonding fog-sealing adhesive material
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269687/
https://www.ncbi.nlm.nih.gov/pubmed/34203216
http://dx.doi.org/10.3390/ma14133599
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