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Experimental Study on Waterproofing Properties of Putty-Based Composite Rubber Strip for Underground Post-Tensioned Precast Concrete Structures

Cited 4 time in Web of Science Cited 4 time in Scopus
Authors

Wu, Xiang-guo; Chen, Xiao-kai; Yu, Shi-yan; Hong, Seongwon; Kang, Thomas H

Issue Date
2019-01-28
Publisher
BioMed Central
Citation
International Journal of Concrete Structures and Materials. 2019 Jan 28;13(1):8
Keywords
full-scale testsjointsprecast concrete structureputty-based composite rubber stripwaterproofingpost-tensioning
Abstract
The proper assembly of underground precast concrete structures is often critical in the construction of underground structures. In particular, interfacial waterproofing between precast concrete segments is a key factor influencing use, safety, and life span. Current practice is to incorporate waterproofing rubber strips in the design. During the installation process, compressive stress is applied to the strip by post-tensioning to achieve performance. For this paper, lateral constraint compression tests were carried out on composite rubber seal strips that utilize putty. Special waterproofing and sealing test devices were designed to investigate corresponding relationships between water pressure and compressive stress (or strain). A relationship between water resistance pressure and compression stress and strain of the putty-based composite rubber strip was proposed based on the series tests and the control target of the minimum compression strain of the putty composite rubber strip was then suggested. Finally, full-scale waterproofing tests on tunnel joints were conducted. The experimental results provide a scientific reference for the engineering application and design of composite sealing rubber strips putty for underground post-tensioned precast concrete structures.
ISSN
2234-1315
Language
English
URI
https://hdl.handle.net/10371/147144
DOI
https://doi.org/10.1186/s40069-018-0307-y
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