Aller au contenu principal
Accès ouvert déclaré 2025 article

Experimental Research of Fatigue Performance of OSDs with Severe Fatigue Cracking After Reinforcement Using UHPC Layer

1Citations signalées, ce qui n’est pas une note de qualité
5Institutions déclarées
1Pays d’affiliation déclarés

Rattachement africain : cn. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Based on the newly developed technology proposed by our team, which involves reinforcing severely cracked orthotropic steel bridge decks (OSDs) with an ultra-high-performance concrete (UHPC) layer containing transverse steel-plate strips, this study conducted full-scale fatigue performance validation tests on the steel–UHPC composite bridge deck of the Junshan Yangtze River Bridge. To verify that the observed stress distribution reasonably reflects the actual structural behavior, finite-element modeling was used to derive the stress influence lines for both the actual bridge segment model and the laboratory-test specimen designed in this study across different fatigue details. The finite-element analysis showed good agreement between the model of the actual bridge segment and that of the laboratory-test specimen. The fatigue tests were conducted in three phases. In the first phase, fatigue cracks were initiated and monitored at specific critical details of the deck before reinforcement. The results indicated that cracks formed most easily and propagated most quickly at the intersections between the deck plate and U-ribs, as well as at the weld holes between U-ribs and transverse diaphragms. In the second phase, the propagation of these fatigue cracks and the changes in stress were compared before and after the UHPC layer reinforcement. The findings proved that the UHPC layer effectively suppressed crack growth and reduced the stress amplitude at fatigue-prone details (with reductions of up to 96% at the deck plate and U-ribs, and up to 57% at the U-ribs and diaphragm weld holes). In the third phase, the model underwent additional fatigue testing, including 1 million loading cycles at the diaphragm and 2 million two-point loading cycles at the mid-span, to verify the long-term fatigue resistance of the reinforced model throughout its entire service life. Data provided by the health monitoring system of the in-situ measurements on a real bridge further validated the effectiveness of the reinforcement measures in reducing stress amplitude at fatigue-sensitive locations (with stress amplitude reductions of up to 86% at the intersections of the deck plate, U-ribs, and transverse diaphragms). This study provides actionable insights into fatigue behaviors and reinforcement strategies, contributing valuable experience toward the maintenance and preservation of similar infrastructure.

Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.

Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Experimental Research of Fatigue Performance of OSDs with Severe Fatigue Cracking After Reinforcement Using UHPC Layer
Date Crossref
11/09/2025
Éditeur
Springer Science and Business Media LLC
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Où se fait cette recherche

  • Jiaxing Vocational Technical College pays non établi dans la notice
    Université ou école supérieure
  • Guangdong Provincial Academy of Building Research Group pays non établi dans la notice
    Structure de recherche
  • CCCC Highway Consultants (China) pays non établi dans la notice
    Entreprise
  • Guangzhou Automobile Group (China) pays non établi dans la notice
    Entreprise
  • Tianjin Municipal Engineering Design and Research Institute pays non établi dans la notice
    Structure de recherche
  • School of Urban Construction pays non établi dans la notice
    Université ou école supérieure
  • Guangdong Provincial Highway Construction Co. pays non établi dans la notice
    Organisation à but non lucratif
  • CCCC Highway Bridges National Engineering Research Centre Co. pays non établi dans la notice
    Structure de recherche
  • Ltd. Guangzhou Highway Engineering Group Co. pays non établi dans la notice
    Entreprise
  • Tianjin Municipal Engineering Design & Research Institute pays non établi dans la notice
    Structure de recherche

Jiaxing Vocational Technical College, Guangdong Provincial Academy of Building Research Group et CCCC Highway Consultants (China), avec 7 autres affiliations.

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Innovative concrete reinforcement materialsConcrete Corrosion and DurabilityStructural Behavior of Reinforced Concrete

BNTIC News n’est pas le producteur de ces données. Les publications sont interrogées à la demande dans Crossref, OpenAIRE, DOAJ, Europe PMC, HAL, DataCite, AfricArXiv, ROR et la Banque mondiale, sans clé d’accès. OpenAlex reste optionnel. Aucun service payant n’est nécessaire et aucune donnée externe n’est enregistrée en base. Consulter les sources et leurs limites.