Tunnels in hard, jointed rock are commonly reinforced with shotcrete (sprayed concrete) applied directly on the irregular rock surface. The thickness for such linings can be as small as 50 mm, which result in a fast drying. The resulting shrinkage of the restrained lining is a well-known phenomenon, which leads to cracking. The installation of drainage systems also results in an end-restrained shotcrete lining that is more prone to shrinkage cracking. The drying process is a complex problem that depends on multiple factors such as cement content, porosity and ambient air conditions (i.e. temperature, relative humidity and wind speed). Two numerical models capable of capturing the structural effects of drying shrinkage were compared in this study. It was found that inclusion of non-linear drying shrinkage is important for accurately describing crack initiation in an end-restrained shotcrete slab. The best fit to the experimental data was obtained when the rate of drying was described as a non-linear decreasing function.
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March 2018
Research Article|
September 21 2017
Investigation of non-linear drying shrinkage for end-restrained shotcrete of varying thickness
Andreas Sjölander;
Andreas Sjölander
PhD student
KTH Royal Institute of Technology, Stockholm, Sweden (corresponding author: asjola@kth.se)
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Anders Ansell
Anders Ansell
Professor
KTH Royal Institute of Technology, Stockholm, Sweden
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Publisher: Emerald Publishing
Received:
April 10 2017
Revision Received:
July 05 2017
Accepted:
July 07 2017
Online ISSN: 1751-763X
Print ISSN: 0024-9831
ICE Publishing: All rights reserved
2017
Magazine of Concrete Research (2018) 70 (6): 271–279.
Article history
Received:
April 10 2017
Revision Received:
July 05 2017
Accepted:
July 07 2017
Citation
Sjölander A, Ansell A (2018), "Investigation of non-linear drying shrinkage for end-restrained shotcrete of varying thickness". Magazine of Concrete Research, Vol. 70 No. 6 pp. 271–279, doi: https://doi.org/10.1680/jmacr.17.00171
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