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Influence of local geometric parameters on fatigue performance of orthotropic steel deck 被引量:1

Influence of local geometric parameters on fatigue performance of orthotropic steel deck
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摘要 Fatigue has become critical issue for bridge with orthotropic steel deck.Number of stress cycle and equivalent stress amplitude were adopted as two investigated fatigue effects.As presented from fatigue monitoring comparison of two series-lined bridges,three local geometric parameters of steel box girder have significant influence on fatigue performance of two welded joints.They are thickness of longitudinal ribs(Tr),longitudinal spacing of transverse floor plate(Sc)and longitudinal truss(LT).Fatigue analytical models were created for parametric study of fatigue effects under wheel load.Consequently,three local parameters have exhibited insignificant influence on number of stress cycle.Compared with Tr and Sc,configuration of LT has brought about foremost effect on the equivalent stress amplitude.For equivalent stress amplitude of rib-to-deck and rib-to-rib welded joints,the influence regions of LT are respectively longitudinal strap and quadrate with the geometric length of 600 mm.Enough attention ought to be paid for local stiffen structure on fatigue performance of orthotropic steel deck in fatigue design and monitoring. Fatigue has become critical issue for bridge with orthotropic steel deck.Number of stress cycle and equivalent stress amplitude were adopted as two investigated fatigue effects.As presented from fatigue monitoring comparison of two series-lined bridges,three local geometric parameters of steel box girder have significant influence on fatigue performance of two welded joints.They are thickness of longitudinal ribs (Tr),longitudinal spacing of transverse floor plate (Sc) and longitudinal truss (LT).Fatigue analytical models were created for parametric study of fatigue effects under wheel load.Consequently,three local parameters have exhibited insignificant influence on number of stress cycle.Compared with Tr and Sc,configuration of LT has brought about foremost effect on the equivalent stress amplitude.For equivalent stress amplitude of rib-to-deck and rib-to-rib welded joints,the influence regions of LT are respectively longitudinal strap and quadrate with the geometric length of 600 mm.Enough attention ought to be paid for local stiffen structure on fatigue performance of orthotropic steel deck in fatigue design and monitoring.
出处 《Journal of Central South University》 SCIE EI CAS 2014年第5期2091-2099,共9页 中南大学学报(英文版)
基金 Project(51178100)supported by the National Natural Science Foundation of China Project(2011318223170)supported by Key Program of Ministry of Transport,China Project(1105007001)supported by Program of the Priority Academic Development Program of Jiangsu Higher Education Institutions,China Project(3205001205)supported by Teaching and Research Foundation for Excellent Young Teacher of Southeast University,China Project(CXZZ-0162)supported by Graduate Scientific Innovation Research Foundation of Jiangsu Province,China Project(YBJJ1122)supported by Scientific Research Foundation of Graduate School of Southeast University,China
关键词 fatigue effect orthotropic steel deck local detail structural health monitoring finite element analysis wheel load 正交异性钢桥面 疲劳性能 几何参数 疲劳监测 焊接接头 应力幅 疲劳分析 效应参数
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  • 1XIAO Zhi-gang, YAMADA K, YA S, ZHAO Xiao-ling. Stress analyses and fatigue evaluation of rib-to-deck joints in orthotropic steel decks [J]. Intemational Joumal of Fatigue, 2008, 30(8): 1387-1397.
  • 2MICHELE S P, RONALDO C B, ALUISIO J R M. Stress concentration in steel bridge orthotropie deck [J]. Journal of Constructional Steel Research, 2005, 61(8): 1172-1184.
  • 3CHOI Jun-hyeo, KIM Do-hwan. Stress characteristics and fatigue crack behaviour of the longitudinal rib-to-cross beam joints in an orthotropic steel deck [J]. Advances in Structural Engineering, 2008, 11(2): 189-198.
  • 4YA S, YAMADA K, ISHIKAWA T. Fatigue evaluation of rib-to-deckwelded joints of orthotropic steel bridge deck [J]. Journal of Bridge Engineering, 2011, 16(4): 422-499.
  • 5ERZURUMLU H, TOPRAC A A. Fatigue of orthotropic steel decks [J]. Journal of the Structural Division, 1972, 98(4): 813-830.
  • 6缪长青,邓扬,丁幼亮,李爱群.Damage alarming for bridge expansion joints using novelty detection technique based on long-term monitoring data[J].Journal of Central South University,2013,20(1):226-235. 被引量:4
  • 7KWON K, FRANGOPOL D M. Bridge fatigue reliability assessment using probability density functions of equivalent stress range based on field monitoring data [J]. International Journal of Fatigue, 2010, 32(8): 1221-1232.
  • 8LI Z X, CHAN T H T, KO J M. Fatigue analysis and life prediction of bridges with structural health monitoring data Part I: Methodology and strategy [J]. Engineering Structures, 2001, 23(1): 45-53.
  • 9CHANT H T, LI Z X, KO J M. Fatigue analysis and life prediction of bridges with structural health monitoring data Part II: Application [J]. Engineering Structures, 2001, 23( 1): 55-64.
  • 10WANG Y, LI Z X, LI A Q. Combined use of SHMS and finite element strain data for assessing the fatigue reliability index of girder components in long-span cable-stayed bridge [J]. Theoretical and Applied Fracture Mechanics, 2010, 54(2): 127-136.

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