Evaluation of Dowel Bar Retrofit Performance

Evaluation of Dowel Bar Retrofit Performance PDF Author: Tom Pyle
Publisher:
ISBN:
Category : Dowels
Languages : en
Pages : 81

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Evaluation of Dowel Bar Retrofit Performance

Evaluation of Dowel Bar Retrofit Performance PDF Author: Tom Pyle
Publisher:
ISBN:
Category : Dowels
Languages : en
Pages : 81

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Book Description


Dowel Bar Retrofit Performance in Wisconsin

Dowel Bar Retrofit Performance in Wisconsin PDF Author: Irene K. Battaglia
Publisher:
ISBN:
Category : Dowels
Languages : en
Pages : 48

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Performance Testing of Experimental Dowel Bar Retrofit Designs

Performance Testing of Experimental Dowel Bar Retrofit Designs PDF Author: Nicholas A. Popehn
Publisher:
ISBN:
Category : Dowels
Languages : en
Pages : 108

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Book Description
Effective load transfer across Portland cement concrete pavement joints significantly decreases pavement deterioration. Areas of concern with using dowel bars include high costs, due to the labor-intensive procedure of retrofitting, and corrosion associated with standard mild steel epoxy-coated dowels. This research addresses these problems by evaluating four dowel bar details tested in an accelerated manner. Retrofit testing was performed using mild-steel epoxy coated dowels and fiber reinforced polymer (FRP) dowels. The details tested provide comparisons among dowel bar materials, depth of placement, number of dowels used, and dowel diameter. Verification testing of previously tested details is also presented.

Evaluation of Dowel Bar Retrofits for Local Road Pavements

Evaluation of Dowel Bar Retrofits for Local Road Pavements PDF Author:
Publisher:
ISBN:
Category : Dowels
Languages : en
Pages : 52

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Book Description
As truck traffic on Iowa secondary roads has increased, engineers have moved to concrete pavements of greater depths. Early designs included thickened edge pavements and depths of seven inches or greater. The designs typically did not have load transfer devices installed in the transverse joints and relied on aggregate interlock for this purpose. In some cases, aggregate interlock was not adequate to deal with the soils and traffic conditions and faulting of the joints has begun to appear. Engineers are now faced with the need to install or retrofit load transfer in the joints to preserve the pavements. Questions associated with this decision range from the type of dowel material to dowel diameter, spacing, number of bars, placement method, and construction techniques to be used to assure reduction or elimination of faulting. Buena Vista County constructed a dowel bar retrofit project on one mile of road. The plan called for addition of the dowels (2, 3, or 4) in the outer wheel path only and surface grinding in lieu of asphalt overlay. The project included the application of elliptical-and round-shaped dowels in a rehabilitation project. Dowel material types included conventional epoxy-coated steel and fiber-reinforced polymer. This work involved the determination of relative costs in materials to be used in this type of work and performance of fiber-reinforced polymer (FRP) and elliptical-shaped steel dowels in the retrofit work. The results indicate good performance from each of the bar configurations and use the results of ride and deflection testing over the research period to project the benefits that can be gained from each configuration vs. the anticipated construction costs. The reader is cautioned that this project could not relate the number of dowels required to the level of anticipated truck traffic for other roads that might be considered.

Evaluation of Dowel Bar Retrofit for Long-term Pavement Life in Washington State

Evaluation of Dowel Bar Retrofit for Long-term Pavement Life in Washington State PDF Author: Linda M. Pierce
Publisher:
ISBN:
Category : Dowels
Languages : en
Pages : 534

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Performance Testing of Experimental Dowel Bar Retrofit Designs

Performance Testing of Experimental Dowel Bar Retrofit Designs PDF Author: Trevor D. Odden
Publisher:
ISBN:
Category : Dowels
Languages : en
Pages : 58

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Book Description
An area of concern common to portland cement concrete (PCC) pavements is load transfer across joints and cracks. Three new and experimental dowel bar retrofit designs, that address the issues of high retrofit cost and corrosion susceptibility, were tested in an accelerated manner in order to determine the potential viability of their use for the restoration of load transfer in PCC pavements. Innovations in the three designs included the use of fiber reinforced polymer dowels, grouted stainless steel pipe dowels, and a change in the geometric configuration of the design. An evaluation of test results and recommendations, regarding the use of the designs for the restoration of load transfer in PCC pavements, are presented.

Performance Testing of Dowel Bar Retrofit Details

Performance Testing of Dowel Bar Retrofit Details PDF Author: Nicholas Andrew Popehn
Publisher:
ISBN:
Category :
Languages : en
Pages : 214

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Dowel Bar Retrofit

Dowel Bar Retrofit PDF Author: Debra L. Bischoff
Publisher:
ISBN:
Category : Pavements
Languages : en
Pages : 60

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Dowel Bar Retrofit Mix Design and Specification

Dowel Bar Retrofit Mix Design and Specification PDF Author: Jan Olek
Publisher: Purdue University Press
ISBN: 9781622602124
Category :
Languages : en
Pages : 288

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Book Description
When dealing with the issue of repair of concrete pavement repair using dowel bar retrofit technique, it is very desirable for the repair material to have high fluidity that can ensure good compaction and facilitate flow to tight spaces, preferably without the use of a vibrator. The focus of this project was on identifying critical properties that control long-term performance of repair concrete, especially rapid-setting materials extended using pea gravel (maximum size aggregate 9.5 mm). In the first phase of this project, four commercial rapid-setting materials (CRSMs) were selected and development of mixture proportions in terms of optimum pea gravel content and water content was performed. Optimized mixtures were further evaluated at three different initial temperature conditions. The properties evaluated included workability, setting time, rate of compressive strength developed, slant shear bond strength, freeze-thaw resistance, air-void system characteristics of hardened concrete, drying shrinkage and cracking potential. It was observed that some of the CRSMs evaluated did not meet requirements of ASTM C 928. All, except one, CRSMs tested exhibited low resistance to freezing and thawing but all had high resistance to cracking. In the second phase of the project, rapid-setting self-consolidating concrete (RSSCC) was developed using ternary blend of cementitious materials, high-range water reducer (HRWR) and accelerators. Slump flow, visual stability index (VSI), compressive strength at various ages and the power consumption values for the mortar mixer indicated that a five minutes mixing sequence involving a 2-step addition of HRWR produces stable RSSCC mixture. The results of various tests carried out indicate that it is possible to develop a small aggregate size-based self-consolidating repair concrete that achieves a compressive strength of 19 MPa at the end of 6 hrs, has good bond characteristics and has excellent freezing and thawing durability (DF>90%).

Evaluation of MMFX 2 Steel Corrosion-resistant Dowel Bars in Jointed Plain Concrete Pavement

Evaluation of MMFX 2 Steel Corrosion-resistant Dowel Bars in Jointed Plain Concrete Pavement PDF Author: Irene K. Battaglia
Publisher:
ISBN:
Category : Dowels
Languages : en
Pages : 52

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