All Stories
- In-situ testing and model updating of a long-span cable-stayed railway bridge with hybrid girders subjected to a running train
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- Front Matter
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- Extending the fatigue life of existing truss bridges
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- UHPFRC strengthening strategies on existing steel and steel-concrete bridges
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- Prolonging the Lifetime of Old Steel and Steel–Concrete Bridges: Assessment Procedures and Retrofitting Interventions
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- Assessment Procedure and Rehabilitation Criteria for Riveted Road Bridges
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- Extending the Fatigue Life of Steel Truss Bridges with Tuned Mass Damper Systems
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- Lifetime extension of existing steel bridges
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- Recent northeast Italian tornado events: lesson learned for improving structures
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- Extending the lifetime of steel truss bridges by cost-efficient strengthening interventions
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- Structural analysis and design of a multispan network arch bridge
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- Bridge assessment, retrofit, and management
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- Bridge structural theory and modeling
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- Case study
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- Case study
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- The history, aesthetics, and design of bridges
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- Steel and composite bridges
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- Masonry bridges
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- Railway bridges
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- Loads on bridges
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- Fatigue and fracture
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- Longitudinal web stiffening in steel girders: Fracture propagation and life cycle design
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- Orthotropic steel deck design to extend the lifetime of plate and box girder bridge and viaducts
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- Steel bridge coatings and corrosion protection
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- Steel bridges: Codes, design specifications and construction issues
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- Residual life of historic riveted steel bridges: an analytical approach
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- Assessment and rehabilitation of steel railway bridges using fibre-reinforced polymer (FRP) composites
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- Retrofit procedures of bridge networks against seismic actions in Italy
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- Moving Load and Fatigue Analysis of a Long Span High Speed Railway Bridge
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- Moving Loads Bridge Response: Structural Analysis and Eurocode Provisions
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- Fatigue Behaviour of Steel Bridge Joints Strenghtened with FRP Laminates
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- Assessment procedure and rehabilitation criteria for the riveted railway Adige Bridge
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- Fatigue Damage Estimation in Existing Railway Steel Bridges by Detailed Loading History Analysis
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- Coupled Safety Assessment of Cable Stay Bridges
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- Assessment procedures and strengthening of an existing metal bridge
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- Life cycle assessment of existing steel bridges considering corrosion and fatigue coupled problems
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- Influence of fatigue on cable arrangement in cable-stayed bridges
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- Structural Analysis of the Cantilever Construction Process in Cable-Stayed Bridges
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- Fatigue tests on riveted steel elements taken from a railway bridge
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- Erratum for “Structural Analysis and Fatigue Reliability Assessment of the Paderno Bridge” by A. Pipinato and C. Modena
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- Corrigendum to “Fatigue assessment of highway steel bridges in presence of seismic loading” [Eng Struct 33 (2011) 202–209]
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- A simplified management procedure for bridge network maintenance
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- Fatigue assessment of highway steel bridges in presence of seismic loading
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- Structural Analysis of Historical Metal Bridges in Italy
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- Residual service life of existing railway bridges
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- Structural analysis and fatigue life assessment of the Paderno Arch Bridge
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- Structural Analysis and Fatigue Reliability Assessment of the Paderno Bridge
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- Step Level Procedure for Remaining Fatigue Life Evaluation of One Railway Bridge
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- Arranging geometric configuration of cable-stayed bridges taking fatigue into account
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- Innovative Methods for Railway Steel Bridge Remaining Life Estimation
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- High-cycle fatigue behavior of riveted connections for railway metal bridges
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- Evaluation of fatigue strength of one riveted historical railway bridge
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