This paper reviews the results of a comprehensive investigation including more than 100 fatigue damage cases, reported for steel and composite bridges. The damage cases are categorized according to types of detail. The mechanisms behind fatigue damage in each category are identified and studied. It was found that more than 90% of all reported damage cases are of deformation-induced type and generated by some kind of unintentional or otherwise overlooked interaction between different load-carrying members or systems in the bridge. Poor detailing, with unstiffened gaps and abrupt changes in stiffness at the connections between different members were also found to contribute to fatigue cracking in many details
015919752016Final ReportPDFTech ReportK-TRAN: KU-11-5C1875Anchor boltsCarbon fibersDistortion (Struc...
Results of extensive experiments involving the fatigue behaviour of welded structures which are a pa...
The use of high strength steel has the potential to reduce the amount of steel used in bridge struct...
This paper reviews the results of a comprehensive investigation including more than 100 fatigue dama...
This document provides guidelines for the maintenance actions to address fatigue cracking and detail...
Condition of bridges with defects can lead to destruction and at the same time adverse effects on th...
This thesis concerns three specific fatigue topics related to steel members in bridges, namely: (1)...
Several studies have identified distortion-induced fatigue as the leading cause of cracks in steel b...
As fatigue cracks were discovered under the bridge deck of the 48 years old railway bridge Linthkana...
Fatigue cracking has been an extensive problem for many steel bridges designed prior to the identifi...
PDFTech Reporthttp://ntl.bts.gov/lib/54000/54500/54501/FHWA-KS-14-03_Appendices.pdfFHWA-KS-14-03C179...
PDFBriefFHWA-KS-14-03Steel bridgesGirdersFatigue crackingRetrofittingWeld metalDistortion (Structure...
Multi-girder steel bridges designed prior to the mid-1980's, have developed cracks due to distortion...
This paper studies the combined effect of corrosion and fatigue on the growth of cracks that arise f...
Fatigue cracking has been an extensive problem for many steel bridges designed prior to the identifi...
015919752016Final ReportPDFTech ReportK-TRAN: KU-11-5C1875Anchor boltsCarbon fibersDistortion (Struc...
Results of extensive experiments involving the fatigue behaviour of welded structures which are a pa...
The use of high strength steel has the potential to reduce the amount of steel used in bridge struct...
This paper reviews the results of a comprehensive investigation including more than 100 fatigue dama...
This document provides guidelines for the maintenance actions to address fatigue cracking and detail...
Condition of bridges with defects can lead to destruction and at the same time adverse effects on th...
This thesis concerns three specific fatigue topics related to steel members in bridges, namely: (1)...
Several studies have identified distortion-induced fatigue as the leading cause of cracks in steel b...
As fatigue cracks were discovered under the bridge deck of the 48 years old railway bridge Linthkana...
Fatigue cracking has been an extensive problem for many steel bridges designed prior to the identifi...
PDFTech Reporthttp://ntl.bts.gov/lib/54000/54500/54501/FHWA-KS-14-03_Appendices.pdfFHWA-KS-14-03C179...
PDFBriefFHWA-KS-14-03Steel bridgesGirdersFatigue crackingRetrofittingWeld metalDistortion (Structure...
Multi-girder steel bridges designed prior to the mid-1980's, have developed cracks due to distortion...
This paper studies the combined effect of corrosion and fatigue on the growth of cracks that arise f...
Fatigue cracking has been an extensive problem for many steel bridges designed prior to the identifi...
015919752016Final ReportPDFTech ReportK-TRAN: KU-11-5C1875Anchor boltsCarbon fibersDistortion (Struc...
Results of extensive experiments involving the fatigue behaviour of welded structures which are a pa...
The use of high strength steel has the potential to reduce the amount of steel used in bridge struct...