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  • Fatigue of concrete is an effect caused by cyclic loading of structures. Generally, it is considered a purely mechanical phenomenon when stress variation causes small defects which gradually lead to total decomposition of concrete microstructure. But, since majority of concrete structures subjected to cyclic loading are represented by road bridges, the effect of chemical changes in microstructure of concrete, which are mostly caused by chlorides, should be also considered. This paper presents a fuzzy-logic-based method for assessment of the combined effect of cyclic loading and chlorides in compressed zones of concrete structures. The flow of the modeling is explained and the results are discussed in an illustrative example.
  • Fatigue of concrete is an effect caused by cyclic loading of structures. Generally, it is considered a purely mechanical phenomenon when stress variation causes small defects which gradually lead to total decomposition of concrete microstructure. But, since majority of concrete structures subjected to cyclic loading are represented by road bridges, the effect of chemical changes in microstructure of concrete, which are mostly caused by chlorides, should be also considered. This paper presents a fuzzy-logic-based method for assessment of the combined effect of cyclic loading and chlorides in compressed zones of concrete structures. The flow of the modeling is explained and the results are discussed in an illustrative example. (en)
Title
  • Fuzzy-logic Model of Fatigue of Concrete Including Chloride Ingress
  • Fuzzy-logic Model of Fatigue of Concrete Including Chloride Ingress (en)
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  • Fuzzy-logic Model of Fatigue of Concrete Including Chloride Ingress
  • Fuzzy-logic Model of Fatigue of Concrete Including Chloride Ingress (en)
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  • RIV/68407700:21110/12:00201366!RIV13-GA0-21110___
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  • P(GAP105/10/2098)
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  • 137619
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  • RIV/68407700:21110/12:00201366
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  • concrete; fatigue; chloride; fuzzy logic; material model (en)
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  • [C9CBF575BC6A]
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  • New Delhi
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  • New Delhi
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  • Proceedings of The Third Asian Conference on Mechanics of Functional Materials and Structures 2012
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  • Kohoutková, Alena
  • Štemberk, Petr
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  • Indian Institute of Technology, Delhi
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  • 978-81-8487-248-4
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  • 21110
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