Scopes
(The following topics include but are not limited to)
Track 1: Structural Engineering and Design Theory
Structural Analysis and Design Theory
Steel Structures, Concrete Structures and Composite Structures Design
Structural Dynamic Analysis and Nonlinear Behavior
Performance-Based Structural Design Methods
Structural Stability and Ultimate Bearing Capacity
Structural Durability Design (Environmental Erosion, Fatigue, etc.)
Design of Large Span, High-rise and Complex Structures
Design and Analysis of Structural Connection Nodes
Existing Building Assessment, Reinforcement and Renovation Design
Structural Wind Engineering and Wind Resistance Design
Structural Fire Resistance Design and Protective Technologies
New Structural Systems (Prestressed, Reversible Structures, etc.)
Track 2: Concrete Materials and New Building Materials
High-performance Concrete and Ultra-High Performance Concrete (UHPC)
Fiber Reinforced Concrete and Self-Compacting Concrete
New Low-Carbon Admixtures (Polymer Gels, Alkali-Activated Materials, etc.)
Recycled Aggregate Concrete and Construction Waste Resource Utilization
Concrete Durability (Carbonation, Chloride Ion Erosion, Freeze-Thaw, etc.)
Multiscale Mechanics and Microscopic Characterization of Concrete Materials
Smart Concrete and Self-Repairing Concrete
3D Printing Concrete Materials and Processes
New Reinforcing/FRP Bars and Coordinated Work with Concrete
Light Aggregate Concrete and Insulation Integrated Materials
Nanomodified Concrete and Functional Concrete
Performance and Degradation Mechanisms of Concrete Materials under Extreme Environments
Track 3: Structural Seismic Design and Performance Evaluation
Performance-Based Seismic Design Theory and Methods
Resilience-Based Seismic Design Concept
Seismic Design Principles for Concrete Structures
Seismic Design of Steel and Masonry Structures
Application of Seismic Isolation and Damping Techniques
Energy Dissipation Damping Devices and Intelligent Damping Systems
Seismic Load Analysis and Seismic Experimental Methods
Seismic Response and Seismic Action Calculation
Seismic Reinforcement, Renovation and Performance Enhancement Technologies
Seismic Damage Assessment and Resilience Evaluation
Research on Seismic Application of High-Resilience Materials
Structural Responses under Coupled Effects of Multiple Disasters ......
Track 1: Structural Engineering and Design Theory
Structural Analysis and Design Theory
Steel Structures, Concrete Structures and Composite Structures Design
Structural Dynamic Analysis and Nonlinear Behavior
Performance-Based Structural Design Methods
Structural Stability and Ultimate Bearing Capacity
Structural Durability Design (Environmental Erosion, Fatigue, etc.)
Design of Large Span, High-rise and Complex Structures
Design and Analysis of Structural Connection Nodes
Existing Building Assessment, Reinforcement and Renovation Design
Structural Wind Engineering and Wind Resistance Design
Structural Fire Resistance Design and Protective Technologies
New Structural Systems (Prestressed, Reversible Structures, etc.)
Track 2: Concrete Materials and New Building Materials
High-performance Concrete and Ultra-High Performance Concrete (UHPC)
Fiber Reinforced Concrete and Self-Compacting Concrete
New Low-Carbon Admixtures (Polymer Gels, Alkali-Activated Materials, etc.)
Recycled Aggregate Concrete and Construction Waste Resource Utilization
Concrete Durability (Carbonation, Chloride Ion Erosion, Freeze-Thaw, etc.)
Multiscale Mechanics and Microscopic Characterization of Concrete Materials
Smart Concrete and Self-Repairing Concrete
3D Printing Concrete Materials and Processes
New Reinforcing/FRP Bars and Coordinated Work with Concrete
Light Aggregate Concrete and Insulation Integrated Materials
Nanomodified Concrete and Functional Concrete
Performance and Degradation Mechanisms of Concrete Materials under Extreme Environments
Track 3: Structural Seismic Design and Performance Evaluation
Performance-Based Seismic Design Theory and Methods
Resilience-Based Seismic Design Concept
Seismic Design Principles for Concrete Structures
Seismic Design of Steel and Masonry Structures
Application of Seismic Isolation and Damping Techniques
Energy Dissipation Damping Devices and Intelligent Damping Systems
Seismic Load Analysis and Seismic Experimental Methods
Seismic Response and Seismic Action Calculation
Seismic Reinforcement, Renovation and Performance Enhancement Technologies
Seismic Damage Assessment and Resilience Evaluation
Research on Seismic Application of High-Resilience Materials
Structural Responses under Coupled Effects of Multiple Disasters ......
Important Dates/重要日期
- Submission Deadline: 2026.9.16
- Registration Deadline: 2026.9.23
- Conference Date: 2026.10.1
- Notification Date: About a week after the submission
Submission Portal/投稿方式
Mail Address: coartn_aeps@163.com
If you have any question or need any assistance regarding the conference, please feel free to contact our conference specialists:
蒋老师
+86-15680824672(微信同号)
3761629232
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+86---(微信同号)
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