Ultra-thin continuously reinforced concrete pavement (UTCRCP) is an innovative pavement type that consists of a 50 mm high strength steel fibre reinforced concrete (HS-SFRC) layer overlain on a pavement substructure. The thickness results in a flexural stiffness significantly smaller than for conventional concrete pavements. In this paper, the conceptual understanding of the response of UTCRCP to traffic loading was investigated using centrifuge modelling. Simplified pavement models were subjected to a bidirectional moving axle load. The results indicated that axle loading, and not single wheel loading, should be used to investigate the response of UTCRCP as there is significant interaction in substructure deformation caused by the wheels on the ends of an axle. Due to the flexural toughness of the highly reinforced concrete layer, a gap forms between the ultra-thin HS-SFRC overlay and its substructure. Brittle, cemented bases between the HS-SFRC overlay and subgrade should be used with caution, as the flexible nature of the layers above and below the stabilised layer may result in rapid degeneration of the brittle layer.
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January 2023
Research Article|
May 26 2022
Centrifuge modelling of ultra-thin high strength steel fibre reinforced concrete pavements
Martha S. Smit, PhD
;
Martha S. Smit, PhD
Lecturer, Department of Civil Engineering, University of Pretoria, South Africa (corresponding author: phia.smit@up.ac.za)
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Elsabe P. Kearsley, PhD
Elsabe P. Kearsley, PhD
Professor, Department of Civil Engineering, University of Pretoria, South Africa
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Publisher: Emerald Publishing
Received:
April 13 2021
Accepted:
April 05 2022
Online ISSN: 2042-6550
Print ISSN: 1346-213X
ICE Publishing: All rights reserved
2022
International Journal of Physical Modelling in Geotechnics (2023) 23 (1): 43–55.
Article history
Received:
April 13 2021
Accepted:
April 05 2022
Citation
Smit MS, Kearsley EP (2023), "Centrifuge modelling of ultra-thin high strength steel fibre reinforced concrete pavements". International Journal of Physical Modelling in Geotechnics, Vol. 23 No. 1 pp. 43–55, doi: https://doi.org/10.1680/jphmg.21.00011
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