Design recommendations are proposed for the prevention of cracking in concrete structures on ground exposed to imposed strains from temperature or shrinkage. Restraint stresses were calculated with a two-dimensional finite-element model, where concrete is simulated with plane four-node elements and the frictional surface with non-linear contact elements, taking into account both horizontal and vertical movements. The calculations were performed incrementally with stepwise changes in temperature loading. Imposed strains with a gradient over the thickness give restraint stresses significantly higher than uniformly imposed strains. It is shown that superposition can be used to estimate the total stress from a combination of simplified elementary strain profiles. Recommendations for design are given based on comparisons of the finite-element results and results from simplified theoretical methods. Recommended design values for imposed deformation are also given. The simplified methods give good estimations for thin and slender structures.
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December 2000
Research Article|
December 01 2000
Design for crack control in concrete structures on ground exposed to imposed strains
D. Pettersson;
D. Pettersson
Division of Structural Engineering, Lund University
Sweden
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S. Thelandersson
S. Thelandersson
Division of Structural Engineering, Lund University
Sweden
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Publisher: Emerald Publishing
Online ISSN: 1751-7648
Print ISSN: 1464-4177
© 2000 Thomas Telford Ltd
2000
Structural Concrete (2000) 1 (4): 163–172.
Citation
Pettersson D, Thelandersson S (2000), "Design for crack control in concrete structures on ground exposed to imposed strains". Structural Concrete, Vol. 1 No. 4 pp. 163–172, doi: https://doi.org/10.1680/stco.2000.1.4.163
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