Fatigue Strength of Steel Bridge Members with Intersecting Welds

Fatigue Strength of Steel Bridge Members with Intersecting Welds PDF

Author: David T. DeLong

Publisher: Purdue University Press

Published: 2009-06-01

Total Pages: 224

ISBN-13: 9781622600748

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The brittle fracture of the Hoan Bridge in December 2000 highlighted the fracture susceptibility of details containing intersecting welds in steel bridges. Though it is now known that details with intersecting welds should be avoided, many existing bridges in Indiana contain details with intersecting welds. Little experimental data on the fatigue performance of these details exists. The purpose of this study was to evaluate the fatigue strength of several details commonly found in steel bridges in Indiana that contain intersecting welds. Large-scale experimental fatigue testing were performed using nine steel beams to study the behavior of three basic types of welded details: a vertical stiffener, a horizontal stiffener terminating near a vertical stiffener, and a horizontal gusset plate coped to fit around a vertical stiffener. The welded details in this study were fabricated with varying degrees of web gap, defined as the distance between perpendicular weld toes. The results of the experimental testing were examined and compared to prior testing to determine if the size of the web gap affected the fatigue strength. Furthermore, the performance of drilled hole retrofits used to extend the fatigue life of these details was studied. Within the scope of the fatigue testing program, the presence of intersecting welds was not found to significantly affect the fatigue strength of vertical stiffener and horizontal gusset details. However, the size of the web gap may have had an effect on the fatigue strength of details where a horizontal stiffener terminated near a vertical stiffener. Further experimental testing is needed to more clearly define the relationship between web gap and fatigue strength for this case. Drilled hole retrofits were successful at prolonging the lives of these details to varying degrees, but it should be noted that the stress redistribution resulting from these holes may cause fatigue cracking at nearby weld toes.

Fatigue Strength of Steel Beams with Welded Stiffeners and Attachments

Fatigue Strength of Steel Beams with Welded Stiffeners and Attachments PDF

Author: John W. Fisher

Publisher: Transportation Research Board National Research

Published: 1974

Total Pages: 650

ISBN-13:

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This research (which is the second phase of a study intended to provide reliable information on fatigue behavior of steel bridge members), and an extensive investigation of fatigue effects in welded steel beams, which formed the basis for recommendations for revision of the fatigue provisions of the AASHP Standard Specifications for Highway Bridges. A hundred and fifty seven steel beams and girders were fabricated and tested to define the fatigue strength of various structural details, including stiffeners and attachments. Stress range was observed for nearly all the variation in cycle life for all stiffener and a attachment details examined in this study.

Fatigue and Fracture in Steel Bridges

Fatigue and Fracture in Steel Bridges PDF

Author: John W. Fisher

Publisher: Wiley-Interscience

Published: 1984

Total Pages: 344

ISBN-13:

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This book provides a detailed review and summary of twenty-two case studies of fracture and fatigue in bridge structures. Its two parts cover cracks formed as a result of low fatigue resistant details, and cracks resulting from unanticipated secondary or displacement induced stresses.

Fatigue of Steel Bridge Decks

Fatigue of Steel Bridge Decks PDF

Author: Timothy Russell Gurney

Publisher: Bernan Press(PA)

Published: 1992

Total Pages: 176

ISBN-13:

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A broadly-based research programme on orthotropic steel bridge decks, led by D.E. Nunn, was carried out between 1963 and 1987 covering traffic usage, surfacing and fatigue. Initially the work was predictive, determining the main variables and establishing the basis of a fatigue assessment methods. Following the discovery of fatigue cracks in service, methods of repair and strengthening were developed. This work has been recorded in internal reports, but much of it has not been generally available until publication of this review. Experimental results are presented and recommendations given for the fatigue classification of welded joints in orthotropic decks.

Fatigue Evaluation of Steel Bridges

Fatigue Evaluation of Steel Bridges PDF

Author: Mark Douglas Bowman

Publisher: Transportation Research Board

Published: 2012

Total Pages: 125

ISBN-13: 030925826X

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"TRB's National Cooperative Highway Research Program (NCHRP) Report 721: Fatigue Evaluation of Steel Bridges provides proposed revisions to Section 7--Fatigue Evaluation of Steel Bridges of the American Association of State Highway and Transportation Officials Manual for Bridge Evaluation with detailed examples of the application of the proposed revisions."--Publisher's description.

Stress Spectrums for Short-Span Steel Bridges

Stress Spectrums for Short-Span Steel Bridges PDF

Author: KH. Klippstein

Publisher:

Published: 1976

Total Pages: 14

ISBN-13:

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U. S. Steel's Research Laboratory is currently completing research on Project 12-12, sponsored by the National Cooperative Highway Research Program of the National Academy of Sciences, and entitled "Welded Steel Bridge Members Under Variable-Cycle Fatigue Loadings." The main objectives of the program are to develop fatigue data on welded bridge members under variable-amplitude random-sequence stress cycles representative of stress spectrums such as occur in actual bridges and to develop an analytical method of predicting the fatigue behavior under variable-amplitude stress spectrums from constant-amplitude fatigue data.

Near-Threshold Fatigue Strength of a Welded Steel Bridge Detail

Near-Threshold Fatigue Strength of a Welded Steel Bridge Detail PDF

Author: WJ. Wright

Publisher:

Published: 2000

Total Pages: 26

ISBN-13:

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This paper consists or three parts. First, fatigue test data are presented for a tensile specimen with transverse stiffeners, a typical steel bridge detail. The specimens were tested under variable-amplitude fatigue for up to 250,000,000 cycles of loading proportional to the gross vehicle weight distribution of 27,000 trucks weighed on highways. Few and, in some cases, no stress ranges exceeded the endurance limit in the longest life tests. It took up to nine months to test the longest-life specimens.