Properties of 3D Printed TPSiV/SBS/CR Composite–Modified Asphalt Sealant: Rheology, Aging Resistance, and Antifatigue PerformanceSource: Journal of Materials in Civil Engineering:;2025:;Volume ( 037 ):;issue: 004::page 04025038-1Author:Huiyun Xia
,
Xiwen Xue
,
Xu Li
,
Lifang Song
,
ZeLiang Wu
,
Haotian Yang
,
Liying Cui
,
Yanhui Niu
DOI: 10.1061/JMCEE7.MTENG-19269Publisher: American Society of Civil Engineers
Abstract: The use of three-dimensional (3D) printing technology to prepare high-performance asphalt crack repair materials can ensure the effectiveness of road cracks and be a key technology for future intelligent transportation maintenance. Compared with traditional repair materials, although asphalt sealing material modified with styrene-butadiene-styrene (SBS)/crumb rubber (CR) composite has improved the high and low -temperature performance to a certain extent, it still has shortcomings in flexibility, antiaging performance, and durability. Thermoplastic vulcanized silicone rubber (TPSiV) has a stable silicone rubber structure, good weather resistance, high strength and elasticity of thermoplastic polyurethane. Using TPSiV as the primary modifier component, combined with other modifiers, a kind of sealing material was prepared. The high-temperature rheological properties of TPSiV/SBS/CR composite–modified asphalt were studied by dynamic shear rheological test, the low-temperature rheological properties were researched by bending beam rheometer, and the antiaging properties were studied by a rolling thin-film oven test, pressure aging and ultraviolet aging tests. Finally, the possibility of the material in 3D printing technology was studied, including the printing speed, printing temperature, printable layer height and nozzle diameter. The results showed that TPSiV composite–modified asphalt has good viscoelasticity, high and low-temperature performance, flexibility, antiaging performance, fatigue resistance and printability. The printing parameters have been recommended, with a printing temperature of 130°C, a printing speed of 300 mm/min, a layer height of 1mm, and a nozzle diameter of 1mm. However, the application of this 3D printing technology to the actual pavement crack repair needs further research.
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contributor author | Huiyun Xia | |
contributor author | Xiwen Xue | |
contributor author | Xu Li | |
contributor author | Lifang Song | |
contributor author | ZeLiang Wu | |
contributor author | Haotian Yang | |
contributor author | Liying Cui | |
contributor author | Yanhui Niu | |
date accessioned | 2025-04-20T09:58:51Z | |
date available | 2025-04-20T09:58:51Z | |
date copyright | 1/28/2025 12:00:00 AM | |
date issued | 2025 | |
identifier other | JMCEE7.MTENG-19269.pdf | |
identifier uri | http://yetl.yabesh.ir/yetl1/handle/yetl/4303769 | |
description abstract | The use of three-dimensional (3D) printing technology to prepare high-performance asphalt crack repair materials can ensure the effectiveness of road cracks and be a key technology for future intelligent transportation maintenance. Compared with traditional repair materials, although asphalt sealing material modified with styrene-butadiene-styrene (SBS)/crumb rubber (CR) composite has improved the high and low -temperature performance to a certain extent, it still has shortcomings in flexibility, antiaging performance, and durability. Thermoplastic vulcanized silicone rubber (TPSiV) has a stable silicone rubber structure, good weather resistance, high strength and elasticity of thermoplastic polyurethane. Using TPSiV as the primary modifier component, combined with other modifiers, a kind of sealing material was prepared. The high-temperature rheological properties of TPSiV/SBS/CR composite–modified asphalt were studied by dynamic shear rheological test, the low-temperature rheological properties were researched by bending beam rheometer, and the antiaging properties were studied by a rolling thin-film oven test, pressure aging and ultraviolet aging tests. Finally, the possibility of the material in 3D printing technology was studied, including the printing speed, printing temperature, printable layer height and nozzle diameter. The results showed that TPSiV composite–modified asphalt has good viscoelasticity, high and low-temperature performance, flexibility, antiaging performance, fatigue resistance and printability. The printing parameters have been recommended, with a printing temperature of 130°C, a printing speed of 300 mm/min, a layer height of 1mm, and a nozzle diameter of 1mm. However, the application of this 3D printing technology to the actual pavement crack repair needs further research. | |
publisher | American Society of Civil Engineers | |
title | Properties of 3D Printed TPSiV/SBS/CR Composite–Modified Asphalt Sealant: Rheology, Aging Resistance, and Antifatigue Performance | |
type | Journal Article | |
journal volume | 37 | |
journal issue | 4 | |
journal title | Journal of Materials in Civil Engineering | |
identifier doi | 10.1061/JMCEE7.MTENG-19269 | |
journal fristpage | 04025038-1 | |
journal lastpage | 04025038-16 | |
page | 16 | |
tree | Journal of Materials in Civil Engineering:;2025:;Volume ( 037 ):;issue: 004 | |
contenttype | Fulltext |