Numerical Investigation of the Effects of Shrinkage and Thermal Loading on the Behaviour of Misaligned Dowels in Jointed Concrete Pavement

Numerical Investigation of the Effects of Shrinkage and Thermal Loading on the Behaviour of Misaligned Dowels in Jointed Concrete Pavement PDF Author: Cyril Levy
Publisher:
ISBN:
Category :
Languages : en
Pages : 146

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Book Description
Dowel bars in jointed plain concrete pavement (JPCP) have the important function of transferring wheel loads from one slab to the other, hence ensuring that the deflections on each side of the joint are kept almost equal. As well, the dowels should not impede the concrete pavement movements due to environmental effects (temperature and moisture). Dowel bar misalignment, attributed to deficient construction practice, is a major cause of joint distress or faulting by inhibiting the free movement of the slab at the joint. To prevent these issues, tolerance guidelines on misalignment levels are implemented by transportation agencies. Review of previous studies indicate that many researchers analysed the effects of dowel bar misalignment on pavement behaviour using a pull-out test, that is a forcebased opening of the joint. These approaches neglect that joints movements in the field are strain-governed by non-linear temperature and shrinkage actions, leading to combined axial movements and curling of the slab. In this study, the fundamental dowel bar behaviour under shrinkage and thermal loading was determined through detailed 3D finite element modelling (3D-FEM). To that end, models of dowel jointed concrete slabs were developed and subjected to realistic non-linear profiles of shrinkage and thermal strains. Studies were carried out on a single-bar model, taking into account bar-concrete friction and plastic concrete behaviour. The parameters that were investigated included different configurations and levels of bar misalignment and different friction coefficients between the steel and the concrete, simulating the use of bond-breakers. To interpret the results from the numerical analysis, criteria for concrete damage were developed and used in parallel with measures of joint load transfer efficiency; these were obtained by examining the response of the slab under a Falling Weight Deflectometer (FWD) drop at the joint. The results were verified by comparing the outputs of a model consisting of one half of a slab to published data. The analysis of the models revealead that none of the models showed signs of significant damage after the application of shrinkage and two thermal cycles. Analyses with up to ten thermal cycles did not indicate progressive accumulation of damage, suggesting that for the chosen parameters there is no the concrete around the dowel bar will not fail. Models with bars placed higher in the slab and bars with angular misalignment exhibited more damage than the non-misaligned models without reaching the damage criteria used in this study. The models did not exhibit the amount of damage reported in the studies on dowel bar misalignment having used pull-out tests. It was found that no significant difference existed between uncoated and coated dowel bars models results with regards to concrete damage at the joint. However, a high coefficient of friction between the dowel and the concrete, simulating dowel bar corrosion, proved to be the most detrimental to joint integrity. All of the models performed very well with respect to joint load transfer efficiency, suggesting that the plastic strains in the concrete around the dowel did not have a significant impact on joint performance for the realistic range of parameters investigated.

Numerical Investigation of the Effects of Shrinkage and Thermal Loading on the Behaviour of Misaligned Dowels in Jointed Concrete Pavement

Numerical Investigation of the Effects of Shrinkage and Thermal Loading on the Behaviour of Misaligned Dowels in Jointed Concrete Pavement PDF Author: Cyril Levy
Publisher:
ISBN:
Category :
Languages : en
Pages : 146

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Book Description
Dowel bars in jointed plain concrete pavement (JPCP) have the important function of transferring wheel loads from one slab to the other, hence ensuring that the deflections on each side of the joint are kept almost equal. As well, the dowels should not impede the concrete pavement movements due to environmental effects (temperature and moisture). Dowel bar misalignment, attributed to deficient construction practice, is a major cause of joint distress or faulting by inhibiting the free movement of the slab at the joint. To prevent these issues, tolerance guidelines on misalignment levels are implemented by transportation agencies. Review of previous studies indicate that many researchers analysed the effects of dowel bar misalignment on pavement behaviour using a pull-out test, that is a forcebased opening of the joint. These approaches neglect that joints movements in the field are strain-governed by non-linear temperature and shrinkage actions, leading to combined axial movements and curling of the slab. In this study, the fundamental dowel bar behaviour under shrinkage and thermal loading was determined through detailed 3D finite element modelling (3D-FEM). To that end, models of dowel jointed concrete slabs were developed and subjected to realistic non-linear profiles of shrinkage and thermal strains. Studies were carried out on a single-bar model, taking into account bar-concrete friction and plastic concrete behaviour. The parameters that were investigated included different configurations and levels of bar misalignment and different friction coefficients between the steel and the concrete, simulating the use of bond-breakers. To interpret the results from the numerical analysis, criteria for concrete damage were developed and used in parallel with measures of joint load transfer efficiency; these were obtained by examining the response of the slab under a Falling Weight Deflectometer (FWD) drop at the joint. The results were verified by comparing the outputs of a model consisting of one half of a slab to published data. The analysis of the models revealead that none of the models showed signs of significant damage after the application of shrinkage and two thermal cycles. Analyses with up to ten thermal cycles did not indicate progressive accumulation of damage, suggesting that for the chosen parameters there is no the concrete around the dowel bar will not fail. Models with bars placed higher in the slab and bars with angular misalignment exhibited more damage than the non-misaligned models without reaching the damage criteria used in this study. The models did not exhibit the amount of damage reported in the studies on dowel bar misalignment having used pull-out tests. It was found that no significant difference existed between uncoated and coated dowel bars models results with regards to concrete damage at the joint. However, a high coefficient of friction between the dowel and the concrete, simulating dowel bar corrosion, proved to be the most detrimental to joint integrity. All of the models performed very well with respect to joint load transfer efficiency, suggesting that the plastic strains in the concrete around the dowel did not have a significant impact on joint performance for the realistic range of parameters investigated.

Effects of Dowel Misalignments on Concrete Pavement Joint Opening Behavior

Effects of Dowel Misalignments on Concrete Pavement Joint Opening Behavior PDF Author: Milind Laxman Prabhu
Publisher:
ISBN:
Category :
Languages : en
Pages : 386

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Laboratory Investigation of Misaligned Dowel Behavior

Laboratory Investigation of Misaligned Dowel Behavior PDF Author: Kyle Hoegh
Publisher:
ISBN:
Category : Concrete
Languages : en
Pages : 9

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Book Description
Dowels are inserted at the mid-depth of joints in jointed concrete pavements that are exposed to heavy loading to provide load transfer and reduce pumping and faulting. Dowel alignment tolerances in North America have traditionally been strict, although not based on substantial performance data. In this paper, new laboratory testing methods are proposed for evaluation of the effects of dowel misalignment on concrete joint behavior. In these tests, dowels with various levels of rotations and translations were subjected to pullout and shear loading. It was found that dowel misalignment does not have a significant effect on pullout and shear forces for certain ranges of misalignments, which far exceed the tolerances recommended by the Federal Highway Administration. At the same time, it was found that extreme cases and combinations of misalignment resulted in a significant decrease in initial stiffness and shear capacity. Therefore, there is a need for the establishment of rational alignment tolerances. The results of this study provide important information for the development of such tolerances.

NCHRP Report 637

NCHRP Report 637 PDF Author:
Publisher:
ISBN:
Category : Electronic book
Languages : en
Pages :

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Analysis of Effect of Dowel Bar Misalignment on the Performance of Concrete Pavement Joints

Analysis of Effect of Dowel Bar Misalignment on the Performance of Concrete Pavement Joints PDF Author: Patrick Kwok Kei Leong
Publisher:
ISBN:
Category :
Languages : en
Pages : 382

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Principles of Pavement Design

Principles of Pavement Design PDF Author: E. J. Yoder
Publisher: John Wiley & Sons
ISBN: 9780471977803
Category : Technology & Engineering
Languages : en
Pages : 732

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Book Description
Presents a complete coverage of all aspects of the theory and practice of pavement design including the latest concepts.

The Effect of the Dowel Bar Shape and Spacing in Portland Cement Concrete Pavements on the Load Transfer Efficiency of the Transverse Joint

The Effect of the Dowel Bar Shape and Spacing in Portland Cement Concrete Pavements on the Load Transfer Efficiency of the Transverse Joint PDF Author: Dominique Nicole Jean Ingram
Publisher:
ISBN:
Category :
Languages : en
Pages : 254

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Book Description
This paper investigates the effect of dowel bar shape and spacing on the Load Transfer Efficiency of transverse joints in Portland Cement Concrete Pavements. Three different dowel bar sizes, were utilized for this research: a 1.5-inch round dowel bar, an elliptical dowel bar with axes 1.98 and 1.33 inches, and a second elliptical dowel bar with axes of 1.66 and 1.13 inches. Three spacings were investigated with the dowel bar shape, which included 12 inches, 15 inches and 18 inches. The research was accomplished by comparing finite element analyses of the nine shape and spacing combinations with the data collected from construction along Ia. 330. A portion of the highway was constructed using steel dowels of the three sizes described above. Deflection data was collected by the Iowa Department of Transportation using a Falling Weight Deflectometer. Also integrated into the study is the effect the dowel bar shape and spacing has on the reactions imposed on the embedded dowel bars from the applied loads on the pavement surface. A macro was developed using finite element analysis to record the deflected shape, bending moments, shear force, stresses and elastic strains experienced by the dowel bar. Theoretical developments by S. Timoshenko, B. Friberg, and Tabatabaie were also included in this research for comparisons with the finite element analyses.

Pavement Analysis and Design

Pavement Analysis and Design PDF Author: Yang Hsien Huang
Publisher:
ISBN: 9780132726108
Category : Pavements
Languages : en
Pages : 775

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Book Description
For one/two-semester, undergraduate/graduate courses in Pavement Design. This up-to-date text covers both theoretical and practical aspects of pavement analysis and design. It includes some of the latest developments in the field, and some very useful computer software-developed by the author-with detailed instructions.

Thin and Ultra-thin Whitetopping

Thin and Ultra-thin Whitetopping PDF Author: Robert Otto Rasmussen
Publisher: Transportation Research Board
ISBN: 0309070198
Category : Pavements
Languages : en
Pages : 96

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Book Description
TRB's National Cooperative Highway Research Program (NCHRP) Synthesis 338: Thin and Ultra-Thin Whitetopping summarizes available information to document how state departments of transportation and others are currently using thin and ultra-thin whitetopping overlays among various pavement rehabilitation alternatives. The report covers all stages of the proper application of whitetopping overlays, including project selection, design, materials selection, construction, maintenance, and eventual rehabilitation or replacement.

Investigation of Deterioration of Dowel Bars in Jointed Concrete Pavements Under Repeated Loading

Investigation of Deterioration of Dowel Bars in Jointed Concrete Pavements Under Repeated Loading PDF Author: Iliya Yut
Publisher:
ISBN:
Category :
Languages : en
Pages : 418

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Book Description