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09.10.2019

Effective Notch Stress Approach-Based Fatigue Evaluation of Rib-to-Deck Welds Including Pavement Surfacing Effects

verfasst von: Qiudong Wang, Bohai Ji, Zhongqiu Fu, Yue Yao

Erschienen in: International Journal of Steel Structures

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Abstract

The effective notch stress-based fatigue evaluation approach considering the effect of pavement surfacing is developed and verified in this research. Firstly, the sensitivity of stresses at fatigable welds to pavement surfacing was investigated. It turns out that rib-to-deck weld is most sensitive to pavement surfacing. Secondly, the influence of pavement surfacing on initial cracking position of rib-to-deck weld was analysed. Subsequently, the relationship between notch stress and temperature was developed based on the numerical results, so is the relationship between initial cracking position and temperature. Finally, the fatigue damages evaluated by effective notch stress approach and traditional approach were compared and analysed. The results show that the stress dispersal behaviour through pavement surfacing further improves the fatigue durability of rib-to-deck welds. The initial cracking position is related to the pavement temperature, rather than the transverse loading positions of vehicle loads. The effective notch stress concentration position varies with the pavement temperature. Such variation should be reasonably considered in fatigue damage evaluation process where effective notch stress approach is applied.

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Literatur
Zurück zum Zitat Aung, M. P., & Hirohata, M. (2019). Numerical study on post weld heat treatment of non-stiffened welded box section member and its compressive behavior. International Journal of Steel Structures,19(5), 1521–1533.CrossRef Aung, M. P., & Hirohata, M. (2019). Numerical study on post weld heat treatment of non-stiffened welded box section member and its compressive behavior. International Journal of Steel Structures,19(5), 1521–1533.CrossRef
Zurück zum Zitat Choi, J. H., & Kim, D. H. (2008). Stress characteristics and fatigue crack behaviour of the longitudinal rib-to-cross beam joints in an orthotropic steel deck. Advances in Structural Engineering,11(2), 189–198.CrossRef Choi, J. H., & Kim, D. H. (2008). Stress characteristics and fatigue crack behaviour of the longitudinal rib-to-cross beam joints in an orthotropic steel deck. Advances in Structural Engineering,11(2), 189–198.CrossRef
Zurück zum Zitat Cui, C., Zhang, Q. H., Hao, H., Li, J., & Bu, Y. Z. (2018). Influence of asphalt pavement conditions on fatigue damage of orthotropic steel decks: parametric analysis. Journal of Bridge Engineering,23(12), 04018093.CrossRef Cui, C., Zhang, Q. H., Hao, H., Li, J., & Bu, Y. Z. (2018). Influence of asphalt pavement conditions on fatigue damage of orthotropic steel decks: parametric analysis. Journal of Bridge Engineering,23(12), 04018093.CrossRef
Zurück zum Zitat Dong, K. S., Le, V. A., Kim, K. (2013). In-plane ultimate compressive strengths of HPS deck panel system stiffened with U-shaped ribs. Thin-Walled Structures, 63, 70–81.CrossRef Dong, K. S., Le, V. A., Kim, K. (2013). In-plane ultimate compressive strengths of HPS deck panel system stiffened with U-shaped ribs. Thin-Walled Structures, 63, 70–81.CrossRef
Zurück zum Zitat Fu, Z. Q., Ji, B. H., Ye, Z., & Wang, Y. X. (2017a). Fatigue evaluation of cable-stayed bridge steel deck based on predicted traffic flow growth. KSCE Journal of Civil Engineering,21(4), 1400–1409.CrossRef Fu, Z. Q., Ji, B. H., Ye, Z., & Wang, Y. X. (2017a). Fatigue evaluation of cable-stayed bridge steel deck based on predicted traffic flow growth. KSCE Journal of Civil Engineering,21(4), 1400–1409.CrossRef
Zurück zum Zitat Fu, Z. Q., Wang, Q. D., Ji, B. H., & Yuanzhou, Z. Y. (2017b). Rewelding repair effects on fatigue cracks in steel bridge deck welds. Journal of Performance of Constructed Facilities,31(6), 04017094.CrossRef Fu, Z. Q., Wang, Q. D., Ji, B. H., & Yuanzhou, Z. Y. (2017b). Rewelding repair effects on fatigue cracks in steel bridge deck welds. Journal of Performance of Constructed Facilities,31(6), 04017094.CrossRef
Zurück zum Zitat Guo, T., Li, A. Q., & Wang, H. (2008). Influence of ambient temperature on the fatigue damage of welded bridge decks. International Journal of Fatigue,30(6), 1092–1102.CrossRef Guo, T., Li, A. Q., & Wang, H. (2008). Influence of ambient temperature on the fatigue damage of welded bridge decks. International Journal of Fatigue,30(6), 1092–1102.CrossRef
Zurück zum Zitat Hobbacher, A. (2015). Recommendations for fatigue design of welded joints and components. Berlin: Springer. Hobbacher, A. (2015). Recommendations for fatigue design of welded joints and components. Berlin: Springer.
Zurück zum Zitat Ji, B. H., Liu, R., Chen, C., Maeno, H., & Chen, X. F. (2013). Evaluation on root-deck fatigue of orthotropic steel bridge deck. Journal of Constructional Steel Research,90(5), 174–183.CrossRef Ji, B. H., Liu, R., Chen, C., Maeno, H., & Chen, X. F. (2013). Evaluation on root-deck fatigue of orthotropic steel bridge deck. Journal of Constructional Steel Research,90(5), 174–183.CrossRef
Zurück zum Zitat JTG D64-2015. (2015). Specifications for design of highway steel bridge. Beijing: China Communications Press. (In Chinese). JTG D64-2015. (2015). Specifications for design of highway steel bridge. Beijing: China Communications Press. (In Chinese).
Zurück zum Zitat Kainuma, S., Jeong, Y. S., Yang, M. Y., & Inokuchi, S. (2016). Welding residual stress in roots between deck plate and U-rib in orthotropic steel decks. Measurement,92, 475–482.CrossRef Kainuma, S., Jeong, Y. S., Yang, M. Y., & Inokuchi, S. (2016). Welding residual stress in roots between deck plate and U-rib in orthotropic steel decks. Measurement,92, 475–482.CrossRef
Zurück zum Zitat Kloos, M., & Wall, R. S. (2019). Finite element modelling of the structural behaviour of a novel cellular beam non composite steel structure in fire. International Journal of Steel Structures,19(5), 1367–1380.CrossRef Kloos, M., & Wall, R. S. (2019). Finite element modelling of the structural behaviour of a novel cellular beam non composite steel structure in fire. International Journal of Steel Structures,19(5), 1367–1380.CrossRef
Zurück zum Zitat Lazzarin, P., & Livieri, P. (2001). Notch stress intensity factors and fatigue strength of aluminum and steel welded joints. International Journal of Fatigue,23(3), 225–232.CrossRef Lazzarin, P., & Livieri, P. (2001). Notch stress intensity factors and fatigue strength of aluminum and steel welded joints. International Journal of Fatigue,23(3), 225–232.CrossRef
Zurück zum Zitat Li, M., Hashimoto, K., & Sugiura, K. (2014). Influence of asphalt surfacing on fatigue evaluation of rib-to-deck joints in orthotropic steel bridge decks. Journal of Bridge Engineering,19(10), 04014038.CrossRef Li, M., Hashimoto, K., & Sugiura, K. (2014). Influence of asphalt surfacing on fatigue evaluation of rib-to-deck joints in orthotropic steel bridge decks. Journal of Bridge Engineering,19(10), 04014038.CrossRef
Zurück zum Zitat Li, M., Suzuki, Y., Wang, H. C., Aoki, Y., Adachi, Y., & Sugiura, K. (2016). Experimental study of asphalt surfacing influence on rib-to-deck joints considering temperature and dynamic effects. Journal of Bridge Engineering,21(11), 04016077.CrossRef Li, M., Suzuki, Y., Wang, H. C., Aoki, Y., Adachi, Y., & Sugiura, K. (2016). Experimental study of asphalt surfacing influence on rib-to-deck joints considering temperature and dynamic effects. Journal of Bridge Engineering,21(11), 04016077.CrossRef
Zurück zum Zitat Liu, R., Wang, B., & Liu, Y. Q. (2015). Distortion induced fatigue of deck plate at rib intersection with diaphragm in orthotropic steel deck. International Journal of Steel Structures,15(3), 623–632.CrossRef Liu, R., Wang, B., & Liu, Y. Q. (2015). Distortion induced fatigue of deck plate at rib intersection with diaphragm in orthotropic steel deck. International Journal of Steel Structures,15(3), 623–632.CrossRef
Zurück zum Zitat Liu, Y., Qian, Z. D., & Hu, H. Z. (2016a). Thermal field characteristic analysis of steel bridge deck during high-temperature asphalt pavement paving. KSCE Journal of Civil Engineering,20(7), 2811–2821.CrossRef Liu, Y., Qian, Z. D., & Hu, H. Z. (2016a). Thermal field characteristic analysis of steel bridge deck during high-temperature asphalt pavement paving. KSCE Journal of Civil Engineering,20(7), 2811–2821.CrossRef
Zurück zum Zitat Liu, Y., Zhang, H. P., Liu, Y. M., Deng, Y., Jiang, N., & Lu, N. W. (2016b). Fatigue reliability assessment for orthotropic steel deck details under traffic flow and temperature loading. Engineering Failure Analysis,71, 179–194.CrossRef Liu, Y., Zhang, H. P., Liu, Y. M., Deng, Y., Jiang, N., & Lu, N. W. (2016b). Fatigue reliability assessment for orthotropic steel deck details under traffic flow and temperature loading. Engineering Failure Analysis,71, 179–194.CrossRef
Zurück zum Zitat Oh, D. J., Lee, J. M., & Kim, M. H. (2014). Fatigue strength assessment of Invar alloy weld joints using the notch stress approach. Engineering Failure Analysis,42(5), 87–99.CrossRef Oh, D. J., Lee, J. M., & Kim, M. H. (2014). Fatigue strength assessment of Invar alloy weld joints using the notch stress approach. Engineering Failure Analysis,42(5), 87–99.CrossRef
Zurück zum Zitat Pedersen, M. M., Mouritsen, O. Ø., Hansen, M. R., Andersen, J. G., & Wenderby, J. (2010). Re-analysis of fatigue data for welded joints using the notch stress approach. International Journal of Fatigue,32(10), 1620–1626.CrossRef Pedersen, M. M., Mouritsen, O. Ø., Hansen, M. R., Andersen, J. G., & Wenderby, J. (2010). Re-analysis of fatigue data for welded joints using the notch stress approach. International Journal of Fatigue,32(10), 1620–1626.CrossRef
Zurück zum Zitat Rahnavard, R., & Thomas, R. J. (2018). Numerical evaluation of the effects of fire on steel connections; Part 1: Simulation techniques. Case Studies in Thermal Engineering,12, 445–453.CrossRef Rahnavard, R., & Thomas, R. J. (2018). Numerical evaluation of the effects of fire on steel connections; Part 1: Simulation techniques. Case Studies in Thermal Engineering,12, 445–453.CrossRef
Zurück zum Zitat Rahnavard, R., & Thomas, R. J. (2019). Numerical evaluation of the effects of fire on steel connections; Part 2: Model results. Case Studies in Thermal Engineering,13, 100361.CrossRef Rahnavard, R., & Thomas, R. J. (2019). Numerical evaluation of the effects of fire on steel connections; Part 2: Model results. Case Studies in Thermal Engineering,13, 100361.CrossRef
Zurück zum Zitat Wang, Q. D., Ji, B. H., Fu, Z. Q., & Ye, Z. (2019). Evaluation of crack propagation and fatigue strength of rib-to-deck welds based on effective notch stress method. Construction and Building Materials,201, 51–61.CrossRef Wang, Q. D., Ji, B. H., Fu, Z. Q., & Ye, Z. (2019). Evaluation of crack propagation and fatigue strength of rib-to-deck welds based on effective notch stress method. Construction and Building Materials,201, 51–61.CrossRef
Zurück zum Zitat Xiao, Z. G., Yamada, K., Inoue, J., & Yamaguchi, K. (2005). Fatigue cracks in longitudinal ribs of steel orthotropic deck. International Journal of Fatigue,28(4), 409–416.CrossRef Xiao, Z. G., Yamada, K., Inoue, J., & Yamaguchi, K. (2005). Fatigue cracks in longitudinal ribs of steel orthotropic deck. International Journal of Fatigue,28(4), 409–416.CrossRef
Zurück zum Zitat Xiao, Z. G., Yamada, K., Ya, S., & Zhao, X. L. (2008). Stress analyses and fatigue evaluation of rib-to-deck joints in steel orthotropic decks. International Journal of Fatigue,30(8), 1387–1397.CrossRef Xiao, Z. G., Yamada, K., Ya, S., & Zhao, X. L. (2008). Stress analyses and fatigue evaluation of rib-to-deck joints in steel orthotropic decks. International Journal of Fatigue,30(8), 1387–1397.CrossRef
Zurück zum Zitat Ya, S., Yamada, K., & Shikawa, T. (2011). Fatigue evaluation of rib-to-deck welded joints of orthotropic steel bridge deck. Journal of Bridge Engineering,18(5), 492–499.CrossRef Ya, S., Yamada, K., & Shikawa, T. (2011). Fatigue evaluation of rib-to-deck welded joints of orthotropic steel bridge deck. Journal of Bridge Engineering,18(5), 492–499.CrossRef
Zurück zum Zitat Yan, F., Chen, W. Z., & Lin, Z. B. (2016). Prediction of fatigue life of welded details in cable-stayed orthotropic steel deck bridges. Engineering Structures,127, 344–358.CrossRef Yan, F., Chen, W. Z., & Lin, Z. B. (2016). Prediction of fatigue life of welded details in cable-stayed orthotropic steel deck bridges. Engineering Structures,127, 344–358.CrossRef
Zurück zum Zitat Zhang, Q. H., Cui, C., Bu, Y. Z., Liu, Y. M., & Ye, H. W. (2015). Fatigue tests and fatigue assessment approaches for rib-to-diaphragm in steel orthotropic decks. Journal of Constructional Steel Research,114, 110–118.CrossRef Zhang, Q. H., Cui, C., Bu, Y. Z., Liu, Y. M., & Ye, H. W. (2015). Fatigue tests and fatigue assessment approaches for rib-to-diaphragm in steel orthotropic decks. Journal of Constructional Steel Research,114, 110–118.CrossRef
Metadaten
Titel
Effective Notch Stress Approach-Based Fatigue Evaluation of Rib-to-Deck Welds Including Pavement Surfacing Effects
verfasst von
Qiudong Wang
Bohai Ji
Zhongqiu Fu
Yue Yao
Publikationsdatum
09.10.2019
Verlag
Korean Society of Steel Construction
Erschienen in
International Journal of Steel Structures
Print ISSN: 1598-2351
Elektronische ISSN: 2093-6311
DOI
https://doi.org/10.1007/s13296-019-00287-3

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