Self-healing of microcapsule-based materials for highway construction: A review

IF 7.4 2区 工程技术 Q1 ENGINEERING, CIVIL Journal of Traffic and Transportation Engineering-English Edition Pub Date : 2023-06-01 DOI:10.1016/j.jtte.2023.02.003
Enlin Ma , Xi Chen , Jinxing Lai , Xiangze Kong , Chunxia Guo
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引用次数: 1

Abstract

Maintaining the health and reliability of civil facilities is of strategic importance. In highway engineering, pavement cracking impairs the road service and travel comfort level, while structure cracking can cause catastrophic damage. Microcapsule-based self-healing materials offer solutions to auto-recovery micro-cracks and maintain structural health. Such solution has become available by laboratory synthesis and proved effective in addressing the cracking problem during long-term mechanical, thermal, and hydraulic conditions. However, full-scale applications of this technique are not prevalent, showing its potential limitations in highway engineering. Crack healing in highways is a big topic, therefore, this review has two insertion points. (1) We focus on the cracking issues on two specific materials: asphalt and concrete, which account for the vast majority of all the materials used in pavement and structures in highways. (2) Instead of the laboratory studies, we pay more attention to the practical applications, the meaning of healing performance, and the adverse effects of microcapsules to the main structural components (i.e., tunnel lining, bridge piers and beams) and pavement in highways. The practical significance of self-healing materials in highway projects was discussed from the three aspects: strength, durability, and stress redistribution. The difficulty in applying this new technique is also discussed from economic perspective. For future-proofing, a material evaluation system that fits the load condition is required. The self-healing technique brings composites a chance to interact with the environment, showing high potential for contributing to the development of various types of long-lasting infrastructures.

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公路建设用微胶囊材料的自愈性研究进展
维护民用设施的健康和可靠性具有重要的战略意义。在公路工程中,路面开裂会损害道路服务和出行舒适度,而结构开裂会造成灾难性的破坏。基于微胶囊的自修复材料为自动恢复微裂纹和保持结构健康提供了解决方案。这种解决方案已通过实验室合成获得,并被证明在长期的机械、热和水力条件下有效解决了开裂问题。然而,这项技术的全面应用并不普遍,表明其在公路工程中的潜在局限性。高速公路裂缝愈合是一个大课题,因此,本文有两个切入点。(1) 我们关注两种特定材料的开裂问题:沥青和混凝土,这两种材料占公路路面和结构材料的绝大多数。(2) 与实验室研究相比,我们更关注微胶囊的实际应用、愈合性能的意义以及微胶囊对公路主要结构构件(即隧道衬砌、桥墩和梁)和路面的不利影响。从强度、耐久性和应力再分配三个方面论述了自修复材料在公路工程中的实际意义。文中还从经济学角度讨论了应用这一新技术的困难。对于未来的验证,需要一个适合负载条件的材料评估系统。自修复技术为复合材料带来了与环境相互作用的机会,显示出为开发各种类型的持久基础设施做出贡献的巨大潜力。
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来源期刊
CiteScore
13.60
自引率
6.30%
发文量
402
审稿时长
15 weeks
期刊介绍: The Journal of Traffic and Transportation Engineering (English Edition) serves as a renowned academic platform facilitating the exchange and exploration of innovative ideas in the realm of transportation. Our journal aims to foster theoretical and experimental research in transportation and welcomes the submission of exceptional peer-reviewed papers on engineering, planning, management, and information technology. We are dedicated to expediting the peer review process and ensuring timely publication of top-notch research in this field.
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