Performance of Weathering Steel in Bridges

Performance of Weathering Steel in Bridges PDF Author: Pedro Albrecht
Publisher: Transportation Research Board National Research
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 176

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Performance of Weathering Steel in Bridges

Performance of Weathering Steel in Bridges PDF Author: Pedro Albrecht
Publisher: Transportation Research Board National Research
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 176

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Performance of Weathering Steel in Highway Bridges

Performance of Weathering Steel in Highway Bridges PDF Author: American Iron and Steel Institute. Task Group on Weathering Steel Bridges
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 32

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Guidelines for the Use of Weathering Steel in Bridges

Guidelines for the Use of Weathering Steel in Bridges PDF Author:
Publisher: Transportation Research Board National Research
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 116

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The Corrosion Performance of Weathering Steel in Highway Bridges

The Corrosion Performance of Weathering Steel in Highway Bridges PDF Author: M. McKenzie
Publisher:
ISBN:
Category : Steel
Languages : en
Pages : 37

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Performance of Weathering Steel in Highway Bridges

Performance of Weathering Steel in Highway Bridges PDF Author:
Publisher:
ISBN:
Category : Iron and steel bridges
Languages : en
Pages : 32

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Assessment of Weathering Steel Bridge Performance in Iowa and Development of Inspection and Maintenance Techniques

Assessment of Weathering Steel Bridge Performance in Iowa and Development of Inspection and Maintenance Techniques PDF Author: Douglas D. Crampton
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 40

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Book Description
Weathering steel is commonly used as a cost-effective alternative for bridge superstructures, as the costs and environmental impacts associated with the maintenance/replacement of paint coatings are theoretically eliminated. The performance of weathering steel depends on the proper formation of a surface patina, which consists of a dense layer of corrosion product used to protect the steel from further atmospheric corrosion. The development of the weathering steel patina may be hindered by environmental factors such as humid environments, wetting/drying cycles, sheltering, exposure to de-icing chlorides, and design details that permit water to pond on steel surfaces. Weathering steel bridges constructed over or adjacent to other roadways could be subjected to sufficient salt spray that would impede the development of an adequate patina. Addressing areas of corrosion on a weathering steel bridge superstructure where a protective patina has not formed is often costly and negates the anticipated cost savings for this type of steel superstructure. Early detection of weathering steel corrosion is important to extending the service life of the bridge structure; however, written inspection procedures are not available for inspectors to evaluate the performance or quality of the patina. This project focused on the evaluation of weathering steel bridge structures, including possible methods to assess the quality of the weathering steel patina and to properly maintain the quality of the patina. The objectives of this project are summarized as follows: -- Identify weathering steel bridge structures that would be most vulnerable to chloride contamination, based on location, exposure, environment, and other factors. -- Identify locations on an individual weathering steel bridge structure that would be most susceptible to chloride contamination, such as below joints, splash/spray zones, and areas of ponding water or debris. -- Identify possible testing methods and/or inspection techniques for inspectors to evaluate the quality of the weathering steel patina at locations discussed above. -- Identify possible methods to measure and evaluate the level of chloride contamination at the locations discussed above. -- Evaluate the effectiveness of water washing on removing chlorides from the weathering steel patina. -- Develop a general prioritization for the washing of bridge structures based on the structure's location, environment, inspection observations, patina evaluation findings, and chloride test results.

Performance of Weathering Steel in TxDOT Bridges

Performance of Weathering Steel in TxDOT Bridges PDF Author: Bashar McDad
Publisher:
ISBN:
Category : Iron and steel bridges
Languages : en
Pages : 109

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Use and Application of High-performance Steels for Steel Structures

Use and Application of High-performance Steels for Steel Structures PDF Author: Joël Raoul
Publisher: IABSE
ISBN: 9783857481130
Category : Steel, Structural
Languages : en
Pages : 162

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The Corrosion of Weathering Steel Under Real and Simulated Bridge Decks

The Corrosion of Weathering Steel Under Real and Simulated Bridge Decks PDF Author: M. McKenzie
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 40

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Book Description


Evaluation of Unpainted Weathering Steel Bridges in Idaho

Evaluation of Unpainted Weathering Steel Bridges in Idaho PDF Author: Richard A. Jobes
Publisher:
ISBN:
Category : Iron and steel bridges
Languages : en
Pages : 140

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Book Description
Some states have reported problems with excessive corrosion of unpainted A588 weathering steel bridges. Considerable savings in initial and life cycle costs are anticipated when using weathering steel, but only if good long range performance is attained. The Idaho Transportation Department conducted its first in-depth study of a representative group of 12 weathering steel bridges to determine their present condition. Weathering steels develop a protective oxide coating that shields the underlying steel base from further corrosion when certain conditions are met. All weathering steel bridges in Idaho were identified and current inspection reports were reviewed. Data collected from the field inspections include: visual observations of the condition of the protective oxide coating (color, texture, adherence), conditions and details that cause corrosion problems, and plate thickness measurements with an ultrasonic gage. Samples of the oxide coating were tested for chlorides.