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COM1: Concrete structures
COM2: Analysis & design
COM3: Existing concrete structures
COM4: Concrete & concrete technology
COM5: Reinforcements
COM6: Prefabrication
COM7: Sustainability
COM8: Durability
COM9: Dissemination of knowledge
COM10: Model Codes
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Planning, design, and execution of concrete structures, including buildings, bridges, tunnels, and industrial floors.
Models and methods for designing structures under static, long-term, fatigue, fire, and extreme loads.
Assessment, reliability, life-cycle management, health monitoring, and forensic engineering for existing concrete constructions.
Concrete materials, mix design, new technology in flowable concrete, fibre‑reinforced concrete, and conservation methods.
Reinforcing and prestressing materials and systems, improving quality, durability, and advancing design practices.
Precast concrete uses for floors, buildings, bridges, modular structures, etc.
Incorporating sustainability issues into the design, construction, operation and demolition of concrete structures.
Durability planning, understanding deterioration mechanisms, exposure zones, and ensuring long‑term performance of concrete structures.
Codes and normatives
AI uses in concrete research and practice, digitalisation, OPEN databases
Practitioners: get involved with organisations like the fib
Post-doc applications, networking, publishing in journals, participating in the fib activities
Career paths (design and engineering practice; research and academia; business, management and governance; and materials and technology)
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SAG1 - Sustainability
SAG2 - AI and Digitalisation
TG.SAG1.1 - fib Database
TG.SAG1.2 - Sustainable Concrete Structures
TG1.1 - Bridges
TG1.2 - Concrete structures in marine environments
TG1.3 - Buildings
TG1.4 - Tunnels
TG1.5 - Structural sustainability
TG1.6 - History of concrete structures
TG1.7 - Construction of concrete structures
TG1.8 - Concrete industrial floors
TG10.2 - Model Code Updating
TG10.3 - Examples of the Model Code
TG2.1 - Serviceability models
TG2.10 - Textile Reinforced Concrete Construction and Design
TG2.11 - Structures made by digital fabrication
TG2.12 - Protective Concrete Structures against Hazards
TG2.13 - Design and assessment for tsunami loading
TG2.14 - Open-source code development by the fib
TG2.15 - Bridges with combined reinforcement
TG2.2 - Ultimate limit state models
TG2.3 - Fire design of concrete structures
TG2.4 - Computer-based modeling and design
TG2.5 - Bond and material models
TG2.6 - Composite steel-concrete construction
TG2.7 - Seismic Design
TG2.8 - Safety and performance concepts
TG2.9 - Fastenings to structural concrete and masonry
TG3.1 - Reliability and safety evaluation: full-probabilistic and semi-probabilistic methods for existing structures
TG3.2 - Modeling of structural performance of existing concrete structures
TG3.3 - Existing Concrete Structures: Life Management, Testing and Structural Health Monitoring
TG3.4 - Selection and implementation of interventions / through-life management activities and measures for concrete structures
TG3.5 - Forensic engineering
TG4.0 - Code-type Concrete Models
TG4.1 - Fibre-reinforced concrete
TG4.3 - Structural design with flowable concrete
TG4.4 - Conservation and restoration of the built heritage in exposed concrete
TG4.5 - Time-dependent Behavior of Concrete
TG4.7 - Structural Applications of Recycled Aggregate Concrete – Properties, Modeling, and Design
TG4.8 - Low-carbon concrete structures
TG5.1 - FRP Reinforcement for concrete structures
TG5.10 - Inspection and monitoring of reinforced/prestressed concrete structures
TG5.12 - Ultra-high strength prestressing steels for post-tensioning kits and stay systems
TG5.13 - Grouting of tendons in prestressed concrete
TG5.14 - Durability of post-tensioning tendons
TG5.2 - Reinforcing steels and systems
TG5.3 - Prestressing materials and systems
TG5.4 - Recommendations for ground anchor systems
TG5.5 - Cables for cable-supported bridges
TG6.1 - Precast floors & floors for precast structures
TG6.11 - Social Impact of Precast Concrete
TG6.12 - Precast concrete modular buildings
TG6.2 - Quality control for precast concrete
TG6.3 - Sustainability of structures with precast elements
TG6.4 - Precast concrete towers for wind power generators
TG6.5 - Precast concrete bridges
TG6.6 - Retrofitting of precast seismic structures
TG6.8 - Terminology for precast concrete
TG6.9 - Precast parking structures
TG7.1 - Sustainable Concrete - general framework
TG7.3 - Concrete made with recycled materials – Life cycle perspective
TG7.5 - Environmental product declarations (EPD) and equivalent performance of concrete
TG7.6 - Resilient structures
TG7.7 - Sustainable concrete masonry components and structures
TG7.8 - Recycled Materials and industrial by-products for high performance reinforced concrete structures
TG8.1 - Model technical specification for repairs and interventions
TG8.11 - Testing and Monitoring
TG8.12 - Deterioration mechanisms related to other phenomena
TG8.4 - Life cycle cost (LCC) - - Design life and/or replacement cycle
TG8.8 - Design approaches
TG8.9 - Deterioration Mechanisms Related to Corrosion
WP 1.3.2 - Planning Movement Joints in Concrete Buildings
WP1.1.1 - Bridges for high-speed trains
WP1.1.3 - Integral Bridges
WP1.1.4 - Light railway bridges
WP1.1.6 - Design Loads for long span bridges
WP1.1.7 - Performance Evaluation and Service Life Extension of Existing Bridges
WP1.2.1 - Floating concrete structures
WP1.2.2 - Submerged floating tube bridges (SFTB)
WP1.2.3 - Environmental benefits of marine concrete structures
WP1.2.4 - Submerged/floating bridges in seismic areas
WP1.2.5 - Inspections monitoring and maintenance for constructions
WP1.2.6 - Solutions for floating structures
WP10.2.1 - fib Guideline for Design of Structures with Alternative Binder Concretes
WP2.1.1 - Long-term behaviour of prestressed concrete bridges
WP2.1.2 - Restrained and imposed deformations
WP2.12.1 - Design of structures subjected to impact and explosion
WP2.2.1 - Shear in beams
WP2.2.2 - Shear in members with steel fibres
WP2.2.3 - Punching and shear in slabs
WP2.2.4 - Strut and tie modelling
WP2.3.1 - Spalling design
WP2.3.2 - Performance-based fire design
WP2.3.3 - Fire resistance of concrete tunnels
WP2.3.4 - Post-fire assessment
WP2.4.1 - Modelling of Fibre Reinforced Concrete Structures
WP2.4.2 - Life-span numerical simulation of concrete structures
WP2.9.1 - Review of current fib model with a view to MC2010 and model for anchor reinforcement
WP2.9.10 - Evaluation and assessment of existing anchorages
WP2.9.11 - Steel shear strength of anchorages with stand-off base plate connection
WP2.9.12 - Seismic Design
WP2.9.13 - Design of non-rectangular anchor groups
WP2.9.2 - Open topics in the current design guide
WP2.9.3 - Shear lugs
WP2.9.4 - Fatigue loading
WP2.9.5 - Bonded anchors under sustained load
WP2.9.6 - Post-installed reinforcement – Harmonisation of rules for reinforced concrete and anchorages with bonded anchors and post-installed reinforcement
WP2.9.7 - Splitting of bonded anchors
WP2.9.8 - Required stiffness of baseplates
WP2.9.9 - Fire Resistance of anchors and post-installed reinforcement
WP5.1.1 - Strengthening by FRP
WP5.1.2 - Internal FRP reinforcement
WP5.1.3 - Prestressing with FRP
WP8.11.1 - Testing of New Concrete
WP8.11.2 - Monitoring of Concrete
WP8.12.1 - Internal swelling reactions
WP8.8.1 - Durability Planning
WP8.8.2 - ULS verification under chloride- and carbonation-induced deterioration
WP8.8.3 - Exposure Zones
WP8.8.4 - Durability of Eco-efficient concretes
WP8.9.1 - Deterioration Mechanisms – Initiation of Corrosion
WP8.9.2 - Corrosion Propagation
WP8.9.3 - Chloride Threshold
WP8.9.4 - Durability of steel Fiber reinforced Concrete. SFRC
YMG - Young Members Group
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Federation
General assembly
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Code of Conduct
Secretariat
Awards
AOS Registration
Liaison Committee
History
National groups
Logos
National Reports
Support Ukraine
Membership
Individual Subscription
Corporate Subscription
National Subscription
Commissions
COM1: Concrete structures
COM2: Analysis & design
COM3: Existing concrete structures
COM4: Concrete & concrete technology
COM5: Reinforcements
COM6: Prefabrication
COM7: Sustainability
COM8: Durability
COM9: Dissemination of knowledge
COM10: Model Codes
YMG - Young Members Group
SAG1: Sustainability
fib Roadmap to 2050
SAG2: AI and Digitalisation
Databases
Publications
SC Journal
Design & Construction
Model codes
Model code 2020
fib Bulletins
fib Proceedings
CEB Bulletins
FIP Reports
FIP Proceedings
Free documents
Authors & Ethics
Media
Events
fib events
fib webinars
fib-supported events
Short courses
News
fib-news
fib-eNewsletter
Login
Membership
Task groups
Databases