Influence of basalt fiber on performance of thin overlayer asphalt mixtures based on multiple experimental methods
Because of the fast deterioration speed of the surface function of conventional asphalt pavement, thin overlayer with many advantages has been applied to the pavement surface. However, due to problems such as insufficient stripping resistance and cracking resistance, the performance of the thin over...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Frontiers Media S.A.
2023-11-01
|
Series: | Frontiers in Energy Research |
Subjects: | |
Online Access: | https://www.frontiersin.org/articles/10.3389/fenrg.2023.1328676/full |
_version_ | 1827630143444615168 |
---|---|
author | Bo Li Bo Li Yangyang Zhou Zhengguang Wu Zhengguang Wu Aihong Kang Aihong Kang Bangwei Wu Bangwei Wu Chufan Luo |
author_facet | Bo Li Bo Li Yangyang Zhou Zhengguang Wu Zhengguang Wu Aihong Kang Aihong Kang Bangwei Wu Bangwei Wu Chufan Luo |
author_sort | Bo Li |
collection | DOAJ |
description | Because of the fast deterioration speed of the surface function of conventional asphalt pavement, thin overlayer with many advantages has been applied to the pavement surface. However, due to problems such as insufficient stripping resistance and cracking resistance, the performance of the thin overlayer needs to be further improved. To achieve this target, basalt fiber was introduced into two types of thin overlayer asphalt mixtures (Open graded friction course, OGFC-5, and Stone matrix asphalt mixture, SMA-5). The wheel tracking test and uniaxial penetration test for high temperature deformation resistance, low temperature bending beam test and indirect tensile asphalt (IDEAL) cracking test for cracking resistance, cantabro test for stripping resistance, and friction coefficient test for skid resistance were conducted to evaluate various performance of thin overlayer asphalt mixtures, along with the dynamic modulus test for dynamic mechanical response. The results showed that adding basalt fiber could enhance the high temperature deformation resistance, low temperature cracking resistance, intermediate temperature cracking resistance and stripping resistance of the thin overlayer, while having no significant impact on skid resistance. Furthermore, adding basalt fiber could increase the modulus in the high temperature region and decrease the modulus in the low temperature region of the thin overlayer asphalt mixtures, indicating thin overlayer with basalt fiber presenting superior both high temperature and low temperature performance. In addition, the evaluation indexes of SLT and SHT proposed from dynamic modulus test exhibited good consistency with the results of the performance tests. |
first_indexed | 2024-03-09T14:01:59Z |
format | Article |
id | doaj.art-7d7dc111036842d0a137b1bfbda36e31 |
institution | Directory Open Access Journal |
issn | 2296-598X |
language | English |
last_indexed | 2024-03-09T14:01:59Z |
publishDate | 2023-11-01 |
publisher | Frontiers Media S.A. |
record_format | Article |
series | Frontiers in Energy Research |
spelling | doaj.art-7d7dc111036842d0a137b1bfbda36e312023-11-30T07:06:52ZengFrontiers Media S.A.Frontiers in Energy Research2296-598X2023-11-011110.3389/fenrg.2023.13286761328676Influence of basalt fiber on performance of thin overlayer asphalt mixtures based on multiple experimental methodsBo Li0Bo Li1Yangyang Zhou2Zhengguang Wu3Zhengguang Wu4Aihong Kang5Aihong Kang6Bangwei Wu7Bangwei Wu8Chufan Luo9College of Civil Science and Engineering, Yangzhou University, Yangzhou, ChinaResearch Center for Basalt Fiber Composite Construction Materials, Yangzhou, ChinaCollege of Civil Science and Engineering, Yangzhou University, Yangzhou, ChinaCollege of Civil Science and Engineering, Yangzhou University, Yangzhou, ChinaResearch Center for Basalt Fiber Composite Construction Materials, Yangzhou, ChinaCollege of Civil Science and Engineering, Yangzhou University, Yangzhou, ChinaResearch Center for Basalt Fiber Composite Construction Materials, Yangzhou, ChinaCollege of Civil Science and Engineering, Yangzhou University, Yangzhou, ChinaResearch Center for Basalt Fiber Composite Construction Materials, Yangzhou, ChinaCollege of Civil Science and Engineering, Yangzhou University, Yangzhou, ChinaBecause of the fast deterioration speed of the surface function of conventional asphalt pavement, thin overlayer with many advantages has been applied to the pavement surface. However, due to problems such as insufficient stripping resistance and cracking resistance, the performance of the thin overlayer needs to be further improved. To achieve this target, basalt fiber was introduced into two types of thin overlayer asphalt mixtures (Open graded friction course, OGFC-5, and Stone matrix asphalt mixture, SMA-5). The wheel tracking test and uniaxial penetration test for high temperature deformation resistance, low temperature bending beam test and indirect tensile asphalt (IDEAL) cracking test for cracking resistance, cantabro test for stripping resistance, and friction coefficient test for skid resistance were conducted to evaluate various performance of thin overlayer asphalt mixtures, along with the dynamic modulus test for dynamic mechanical response. The results showed that adding basalt fiber could enhance the high temperature deformation resistance, low temperature cracking resistance, intermediate temperature cracking resistance and stripping resistance of the thin overlayer, while having no significant impact on skid resistance. Furthermore, adding basalt fiber could increase the modulus in the high temperature region and decrease the modulus in the low temperature region of the thin overlayer asphalt mixtures, indicating thin overlayer with basalt fiber presenting superior both high temperature and low temperature performance. In addition, the evaluation indexes of SLT and SHT proposed from dynamic modulus test exhibited good consistency with the results of the performance tests.https://www.frontiersin.org/articles/10.3389/fenrg.2023.1328676/fullthin overlayer asphalt mixturebasalt fiberperformance testdynamic moduluscorrelation analysis |
spellingShingle | Bo Li Bo Li Yangyang Zhou Zhengguang Wu Zhengguang Wu Aihong Kang Aihong Kang Bangwei Wu Bangwei Wu Chufan Luo Influence of basalt fiber on performance of thin overlayer asphalt mixtures based on multiple experimental methods Frontiers in Energy Research thin overlayer asphalt mixture basalt fiber performance test dynamic modulus correlation analysis |
title | Influence of basalt fiber on performance of thin overlayer asphalt mixtures based on multiple experimental methods |
title_full | Influence of basalt fiber on performance of thin overlayer asphalt mixtures based on multiple experimental methods |
title_fullStr | Influence of basalt fiber on performance of thin overlayer asphalt mixtures based on multiple experimental methods |
title_full_unstemmed | Influence of basalt fiber on performance of thin overlayer asphalt mixtures based on multiple experimental methods |
title_short | Influence of basalt fiber on performance of thin overlayer asphalt mixtures based on multiple experimental methods |
title_sort | influence of basalt fiber on performance of thin overlayer asphalt mixtures based on multiple experimental methods |
topic | thin overlayer asphalt mixture basalt fiber performance test dynamic modulus correlation analysis |
url | https://www.frontiersin.org/articles/10.3389/fenrg.2023.1328676/full |
work_keys_str_mv | AT boli influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods AT boli influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods AT yangyangzhou influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods AT zhengguangwu influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods AT zhengguangwu influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods AT aihongkang influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods AT aihongkang influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods AT bangweiwu influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods AT bangweiwu influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods AT chufanluo influenceofbasaltfiberonperformanceofthinoverlayerasphaltmixturesbasedonmultipleexperimentalmethods |