Validation of Adhesive and Temperature Property Characteristics of Microsurfacing by Performance-Based Mixture Design Approach

Performance-based mixture design of microsurfacing offers a promising solution to the best application of asphalt emulsions. The presented study investigated a novel approach to evaluate the spalling resistance and high and low-temperature resistance of microsurfacing. The laboratory tests, includin...

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Main Authors: Jicun Shi, Shili Jia, Lan Wang, Qing Zhang, Hongxing Han, Yilong Chen, Zige Song, Lei Zhao
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/14/16/4532
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spelling doaj-a7da36b2e8f64e37a2ee400c3669bf482021-08-26T14:00:54ZengMDPI AGMaterials1996-19442021-08-01144532453210.3390/ma14164532Validation of Adhesive and Temperature Property Characteristics of Microsurfacing by Performance-Based Mixture Design ApproachJicun Shi0Shili Jia1Lan Wang2Qing Zhang3Hongxing Han4Yilong Chen5Zige Song6Lei Zhao7School of Civil Engineering and Architecture, Xinxiang University, Xinxiang 453003, ChinaSchool of Civil Engineering and Architecture, Xinxiang University, Xinxiang 453003, ChinaSchool of Civil Engineering and Architecture, Xinxiang University, Xinxiang 453003, ChinaNational Engineering Laboratory for Highway Maintenance Equipment, Xinxiang 453003, ChinaSchool of Civil Engineering and Architecture, Xinxiang University, Xinxiang 453003, ChinaSchool of Civil Engineering and Architecture, Xinxiang University, Xinxiang 453003, ChinaSchool of Civil Engineering and Architecture, Xinxiang University, Xinxiang 453003, ChinaSchool of Civil Engineering and Architecture, Xinxiang University, Xinxiang 453003, ChinaPerformance-based mixture design of microsurfacing offers a promising solution to the best application of asphalt emulsions. The presented study investigated a novel approach to evaluate the spalling resistance and high and low-temperature resistance of microsurfacing. The laboratory tests, including mixture bond strength (MBS), driving wheel pavement analyzer (DWPA), multi-stress creep recovery (MSCR), load wheel rutting (LWR), and single edge notch beam (SENB) were conducted to characterize the performance-related properties; the response surface method (RSM) was used to obtain the optimal proportions of the mixture. According to the experimental results, the performance-based mixture design method improves the comprehensive performance of microsurfacing, such as adhesion at high and low temperatures. The results of RSM show that temperature is the most important factor that affects the adhesion of mixture. There is a strong correlation between adhesive and temperature performance detected by different test methods. Due to different chemical mechanisms caused by cement and emulsified asphalt, the high-temperature performance index of the microsurfacing mixture is lower than that of HMA. Furthermore, the low-temperature resistance is analyzed and suggested indicator is proposed.https://www.mdpi.com/1996-1944/14/16/4532microsurfacingperformance-basedmixture designresponse surface methodcomprehensive properties
collection DOAJ
language English
format Article
sources DOAJ
author Jicun Shi
Shili Jia
Lan Wang
Qing Zhang
Hongxing Han
Yilong Chen
Zige Song
Lei Zhao
spellingShingle Jicun Shi
Shili Jia
Lan Wang
Qing Zhang
Hongxing Han
Yilong Chen
Zige Song
Lei Zhao
Validation of Adhesive and Temperature Property Characteristics of Microsurfacing by Performance-Based Mixture Design Approach
Materials
microsurfacing
performance-based
mixture design
response surface method
comprehensive properties
author_facet Jicun Shi
Shili Jia
Lan Wang
Qing Zhang
Hongxing Han
Yilong Chen
Zige Song
Lei Zhao
author_sort Jicun Shi
title Validation of Adhesive and Temperature Property Characteristics of Microsurfacing by Performance-Based Mixture Design Approach
title_short Validation of Adhesive and Temperature Property Characteristics of Microsurfacing by Performance-Based Mixture Design Approach
title_full Validation of Adhesive and Temperature Property Characteristics of Microsurfacing by Performance-Based Mixture Design Approach
title_fullStr Validation of Adhesive and Temperature Property Characteristics of Microsurfacing by Performance-Based Mixture Design Approach
title_full_unstemmed Validation of Adhesive and Temperature Property Characteristics of Microsurfacing by Performance-Based Mixture Design Approach
title_sort validation of adhesive and temperature property characteristics of microsurfacing by performance-based mixture design approach
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2021-08-01
description Performance-based mixture design of microsurfacing offers a promising solution to the best application of asphalt emulsions. The presented study investigated a novel approach to evaluate the spalling resistance and high and low-temperature resistance of microsurfacing. The laboratory tests, including mixture bond strength (MBS), driving wheel pavement analyzer (DWPA), multi-stress creep recovery (MSCR), load wheel rutting (LWR), and single edge notch beam (SENB) were conducted to characterize the performance-related properties; the response surface method (RSM) was used to obtain the optimal proportions of the mixture. According to the experimental results, the performance-based mixture design method improves the comprehensive performance of microsurfacing, such as adhesion at high and low temperatures. The results of RSM show that temperature is the most important factor that affects the adhesion of mixture. There is a strong correlation between adhesive and temperature performance detected by different test methods. Due to different chemical mechanisms caused by cement and emulsified asphalt, the high-temperature performance index of the microsurfacing mixture is lower than that of HMA. Furthermore, the low-temperature resistance is analyzed and suggested indicator is proposed.
topic microsurfacing
performance-based
mixture design
response surface method
comprehensive properties
url https://www.mdpi.com/1996-1944/14/16/4532
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