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Arresting fatigue cracks in steel plates using prestressed bonded Fe-SMA strips: Analytical prediction and experimental validation

Lingzhen Li, Sizhe Wang, Tao Chen, Eleni Chatzi, Hossein Heydarinouri, Elyas Ghafoori

2025Thin-Walled Structures10 citationsDOIOpen Access PDF

Abstract

Bonded iron-based shape memory alloy (Fe-SMA) strengthening has shown great potential in fatigue strengthening for steel structures. However, there is a lack of a comprehensive model for analysing the fatigue behaviour of systems strengthened with prestressed bonded Fe-SMA. This study proposes the first analytical model, integrating a prestress analysis and fatigue analysis, to predict fatigue crack arrest in steel plates strengthened with prestressed bonded Fe-SMA strips. Four steel plates, each featuring a central through-thickness crack, were strengthened using bonded Fe-SMA strips, and subsequently, tested under fatigue loading after generating prestress via heating and cooling. The proposed model succeeded in predicting (i) the fatigue crack arrest at certain load levels and (ii) onset of crack propagation at increased load levels.

Topics & Concepts

SMA*STRIPSMaterials scienceStructural engineeringComposite materialFatigue testingForensic engineeringEngineeringComputer scienceAlgorithmStructural Behavior of Reinforced ConcreteStructural Load-Bearing AnalysisFatigue and fracture mechanics