Experimental Study on Influencing Factors Associated with a New Tunnel Waterproofing for Improved Impermeability

IF 0.8 4区 材料科学 Q4 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
Bingxiang Yuan, Jingkang Liang, Hengzheng Lin, Wanying Wang, Yao Xiao
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引用次数: 1

Abstract

Leakage associated with deformation joints seriously affects tunnel structures. Existing tunnel deformation joint waterproofing structures have high construction costs and inconvenient maintenance requirements. This work proposes a new tunnel deformation joint waterproofing structure. Specifically, this structure combines Ω type water stop, an externally attached water stop, and a concrete component. An impermeability test compares standard waterproofed specimens to improved specimens. Under a variety of deformation joint widths, fatigue loading times, and displacement difference, the variation law of the seepage quantity and impermeability pressure values are obtained. The study also examined the ability of the waterproofing membrane and waterproofing coating to improve on standard practices currently used. The seepage quantity test results indicate a positive correlation of displacement difference and fatigue loading times with seepage quantity. The larger the deformation joint width of the specimen, the more the new construction process demonstrated its ability to resist high fatigue loading times and large displacement differences. As the fatigue loading times increase, the impermeability pressure value of both types of specimens decrease; however, the impermeability pressure value of the improved specimen was less affected, which verifies an increased fatigue resistance. Both waterproofing membranes and waterproofing coatings improve the waterproofing ability of the standard specimen, while the impermeability law demonstrated similar results to the standard process specimen. Ultimately, these findings reveal the value of selecting appropriate deformation joint widths under different practical engineering conditions.
新型隧道防渗防水影响因素试验研究
变形缝渗漏严重影响隧道结构。现有隧道变形缝防水结构施工成本高,维护要求不方便。本文提出了一种新的隧道变形缝防水结构。具体来说,这种结构结合了Ω型止水带、外附式止水带和混凝土构件。一项抗渗试验将标准防水样品与改进后的样品进行比较。得到了不同变形缝宽度、不同疲劳加载次数、不同位移差下的渗水量和抗渗压力值的变化规律。该研究还检查了防水膜和防水涂层的能力,以改善目前使用的标准做法。渗流量试验结果表明,位移差和疲劳加载次数与渗流量呈正相关。试件变形缝宽度越大,新施工工艺越能抵抗高疲劳加载次数和大位移差。随着疲劳加载次数的增加,两种试件的抗渗压力值均减小;然而,改进试样的抗渗压力值受影响较小,这证实了抗疲劳性能的提高。防水膜和防水涂层都提高了标准试样的防水能力,而抗渗规律与标准工艺试样的结果相似。最终,这些发现揭示了在不同的实际工程条件下选择合适的变形缝宽度的价值。
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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来源期刊
Journal of Testing and Evaluation
Journal of Testing and Evaluation 工程技术-材料科学:表征与测试
CiteScore
2.30
自引率
8.30%
发文量
221
审稿时长
6.7 months
期刊介绍: This journal is published in six issues per year. Some issues, in whole or in part, may be Special Issues focused on a topic of interest to our readers. This flagship ASTM journal is a multi-disciplinary forum for the applied sciences and engineering. Published bimonthly, the Journal of Testing and Evaluation presents new technical information, derived from field and laboratory testing, on the performance, quantitative characterization, and evaluation of materials. Papers present new methods and data along with critical evaluations; report users'' experience with test methods and results of interlaboratory testing and analysis; and stimulate new ideas in the fields of testing and evaluation. Major topic areas are fatigue and fracture, mechanical testing, and fire testing. Also publishes review articles, technical notes, research briefs and commentary.
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