A full-section asphalt concrete waterproof sealing structure for the high-speed railway subgrade

Q. Fu
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引用次数: 7

Abstract

PurposeThis study aims to investigate the service performances of a new full-section asphalt concrete waterproof sealing structure (FSACWSS) for the high-speed railway subgrade through on-site tracking, monitoring and post-construction investigation.Design/methodology/approachBased on the working state of the waterproof sealing structure, the main functional characteristics were analyzed, and a kind of roller-compacted high elastic modulus asphalt concrete (HEMAC) was designed and evaluated by several groups of laboratory tests. It is applied to an engineering test section, and the long-term performance monitoring and subgrade dynamic performance testing system were installed to track and monitor working performances of the test section and the adjacent contrast section with fiber-reinforced concrete.FindingsResults show that both the dynamic performance of the track structure and the subgrade in the test section meet the requirements of the specification limits. The water content in the subgrade of the test section is maintained at 8–18%, which is less affected by the weather. However, the water content in the subgrade bed of the contrast section is 10–35%, which fluctuates significantly with the weather. The heat absorption effect of asphalt concrete in the test section makes the temperature of the subgrade at the shoulder larger than that in the contrastive section. The monitoring value of the subgrade vertical deformation in the test section is slightly larger than that in the contrastive section, but all of them meet the limit requirements. The asphalt concrete in the test section is in good contact with the base, and there are no diseases such as looseness or spalling. Only a number of cracks are found at the joints of the base plates. However, there are more longitudinal and lateral cracks in the contrastive section, which seriously affects the waterproof and sealing effects. Besides, the asphalt concrete is easier to repair, featuring good maintainability.Originality/valueThis research can provide a basis for popularization and application of the asphalt concrete waterproof sealing structure in high-speed railways.
一种高速铁路路基全断面沥青混凝土防水止水结构
目的通过现场跟踪、监测和事后调查,研究高速铁路路基新型全断面沥青混凝土防水止水结构(FSACWSS)的使用性能。基于防水密封结构的工作状态,分析了其主要功能特点,设计了一种碾压型高弹性模量沥青混凝土(HEMAC),并通过多组室内试验对其进行了评价。应用于某工程试验段,安装了长期性能监测和路基动力性能测试系统,对试验段及相邻纤维增强混凝土对比段的工作性能进行跟踪监测。结果表明,试验段轨道结构和路基的动力性能均满足规范限值的要求。试验段路基含水率保持在8-18%,受天气影响较小。对比断面路基床层含水量为10-35%,随天气变化波动较大。试验段沥青混凝土的吸热作用,使得路基肩部温度大于对比段温度。试验段路基竖向变形监测值略大于对比段,但均满足极限要求。试验段沥青混凝土与基层接触良好,无松动、剥落等病害。在底板的连接处只发现了一些裂缝。但对比断面纵、横向裂缝较多,严重影响防水密封效果。此外,沥青混凝土易于修复,具有良好的可维护性。本研究可为高速铁路沥青混凝土防水止水结构的推广应用提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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