基于多尺度纹理演化表征的沥青路面长期抗滑性能研究进展

IF 8.2 1区 工程技术 Q1 ENGINEERING, MECHANICAL
Yulin He, Zihang Weng, Zhen Leng, Dawei Wang, Jianping Wu
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引用次数: 0

摘要

随着高速公路和智能驾驶技术的快速发展,道路运输的安全性和舒适性逐渐成为社会关注的焦点。针对沥青路面抗滑性能的研究现状和研究热点,综述了轮胎-路面接触机理、纹理劣化行为与抗滑性映射关系、多因素耦合抗滑性预警模型、抗滑耐久性路面设计等相关研究。分析表明,目前的研究还存在一些问题,如混合物与纹理之间的映射关系不充分,测试方法不均匀,预测模型理想化等。Persson滞回摩擦模型提供了目前最全面的抗滑力学计算,PIARC模型与各种试验方法的相关性和归一化最强。基于纹理时空劣化分析的防滑预警模型是目前研究的热点,将为功能耐用路面的设计提供理论指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A review of asphalt pavement Long-Term Skid Resistance performance based on Multi-Scale Texture evolution characterization

A review of asphalt pavement Long-Term Skid Resistance performance based on Multi-Scale Texture evolution characterization

Road transport safety and comfort have gradually become the focus of social attention, with the rapid development of super-highways and intelligent driving technology. To identify the research situation and hotspots of asphalt pavement skid resistance performance, the study reviews the tire-road contact mechanism, texture deterioration behavior and skid resistance mapping relationship, multi-factor coupled skid resistance early warning model, skid resistance durable pavement design and other related research. The analysis shows that there are still some problems in the current research, such as insufficient mapping relationship between mixture and texture, non-uniform testing methods and an idealized prediction model, et al. Persson hysteretic friction model provides the most comprehensive calculation for skid resistance mechanics at present, and the PIARC model has the strongest correlation and normalization with various test methods. The skid resistance early warning model based on texture temporal and spatial deterioration analysis is a hot research topic at present, which will provide theoretical guidance for the design of functional durable pavement.

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来源期刊
Friction
Friction Engineering-Mechanical Engineering
CiteScore
12.90
自引率
13.20%
发文量
324
审稿时长
13 weeks
期刊介绍: Friction is a peer-reviewed international journal for the publication of theoretical and experimental research works related to the friction, lubrication and wear. Original, high quality research papers and review articles on all aspects of tribology are welcome, including, but are not limited to, a variety of topics, such as: Friction: Origin of friction, Friction theories, New phenomena of friction, Nano-friction, Ultra-low friction, Molecular friction, Ultra-high friction, Friction at high speed, Friction at high temperature or low temperature, Friction at solid/liquid interfaces, Bio-friction, Adhesion, etc. Lubrication: Superlubricity, Green lubricants, Nano-lubrication, Boundary lubrication, Thin film lubrication, Elastohydrodynamic lubrication, Mixed lubrication, New lubricants, New additives, Gas lubrication, Solid lubrication, etc. Wear: Wear materials, Wear mechanism, Wear models, Wear in severe conditions, Wear measurement, Wear monitoring, etc. Surface Engineering: Surface texturing, Molecular films, Surface coatings, Surface modification, Bionic surfaces, etc. Basic Sciences: Tribology system, Principles of tribology, Thermodynamics of tribo-systems, Micro-fluidics, Thermal stability of tribo-systems, etc. Friction is an open access journal. It is published quarterly by Tsinghua University Press and Springer, and sponsored by the State Key Laboratory of Tribology (TsinghuaUniversity) and the Tribology Institute of Chinese Mechanical Engineering Society.
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