Study on the Reflective Principle and Long-Term Skid Resistance of a Sustainable Hydrophobic Hot-Melt Marking Paint

Author:

Chen Jun1,Li Rui2ORCID,Zhang Yang3,Wu Yi2,He Haiqi24

Affiliation:

1. Jinhua Wucheng District Highway and Transportation Management Center, Jinhua 321000, China

2. Key Laboratory for Special Area Highway Engineering of Ministry of Education, Chang’an University, Xi’an 710064, China

3. Jinhua Highway and Transportation Management Center, Jinhua 321000, China

4. Science and Engineering, Laval University, Quebec City, QC G1V 0A9, Canada

Abstract

Road marking is very important for driving safety and reducing the accident rate as a basic component of highway construction. However, traditional road marking paints are prone to be worn after short-term application and have poor durability and reflective performance. To address these problems, the marking paint was modified using the organic polymer material polytetrafluoroethylene to create a durable hydrophobic hot-melt marking paint. The factors affecting the reflective performance of marking lines are analyzed, and artificial accelerated abrasion tests were carried out to analyze the skid resistance and marking retroreflection coefficient of hydrophobic coatings. Results show that the texture of the glass beads and the quality of the coating plays a major role in the reflective performance of the marking line. The friction coefficient value of the modified marking paint is 4.62% higher than that of the traditional hot-melt marking paint. The retroreflection performance of the marking paint with 4% hydrophobic material is 8.45% higher than the initial value of the retroreflection coefficient of the traditional hot-melt marking paints. This sustainable hydrophobic hot-melt marking paint is safer and more durable than traditional pavement marking paints, which may save follow-up maintenance resources and cost from the sustainable aspect.

Funder

Science and Technology Planning Project of the Zhejiang Provincial Department of Transportation

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference36 articles.

1. The Progress in Traffic Coatings;Yang;J. Guangdong Univ. Petrochem. Technol.,2014

2. Suitability of Different Materials Used for Road Marking: A Review;Rehman;Int. Res. J. Eng. Technol.,2015

3. Carnaby, B. (2005, January 14–16). Poor road markings contribute to crash rates. Proceedings of the 2005 Australasian Road Safety Research Policing Education Conference, Wellington, New Zealand.

4. Editorial Department of China Journal of Highway and Transport (2016). Review on China’s Traffic Engineering Research Progress: 2016. China J. Highw. Transp., 29, 1–161.

5. Analysis of Pollution Resistance of Road Markings;Zhongnan;Highw. Transp. Technol. Appl. Technol. Ed.,2013

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