Scopes
(Include but not limited to)
Track 1: Aerospace Materials
Advanced aerospace metallic materials and high-temperature alloys
Aviation advanced composite materials
Aircraft composite structure design and test verification
Special high-performance materials and extreme environment materials
Aerospace engine hot-end materials and thermal protection systems
Lightweight materials and aerospace structure optimization
Aerospace intelligent materials and adaptive structures
Additive manufacturing (3D printing) in aerospace
Nanomaterials and micro-nano structure technology
Material surface engineering, coatings and protection technology
Material fracture, fatigue and damage mechanics
Material multi-scale modeling and simulation
Aerospace material preparation and processing technology
Green aerospace materials and recycling technology
Material performance characterization, testing and evaluation
Spacecraft thermal control materials and thermal management technology
Track 2: Mechanical and Electrical Control
Flight guidance, navigation and control (GNC)
Flight control system and autonomous flight technology
Astronautical electronic systems, subsystems and technologies
Mechatronics system design and integration
Mechanical system fault detection, diagnosis and fault-tolerant control
Intelligent sensing, multi-sensor fusion and information fusion
Aerospace electronic integrated technology
Embedded systems and on-board/in-flight computers
Intelligent control theory and methods
Unmanned aerial vehicles and micro-small aircraft (UAV/MAV) control
Navigation and positioning technology
Precise motion control and servo drive
On-board sensors and signal processing technology
Adaptive control and robust control
Human-computer interaction and intelligent decision-making system
Track 3: Structural Dynamics
Aerospace system overall design and aerodynamic layout
Aerodynamics, fluid dynamics and aerodynamic elasticity
Aircraft structure analysis and design
Structural dynamics and control
Astronautical structure and design
Flight mechanics and flight physics
Aerospace engine design (including turbomachinery, propulsion technology)
Hypersonic aircraft technology
Vibration and noise control
Structural health monitoring (SHM) and damage identification
Aerospace structure optimization and multidisciplinary optimization
Digital twin and virtual prototype technology
Aerospace system testing, measurement and verification
Aircraft performance analysis and simulation
Computational fluid dynamics (CFD) and numerical simulation
Space systems and satellite technology ......
Track 1: Aerospace Materials
Advanced aerospace metallic materials and high-temperature alloys
Aviation advanced composite materials
Aircraft composite structure design and test verification
Special high-performance materials and extreme environment materials
Aerospace engine hot-end materials and thermal protection systems
Lightweight materials and aerospace structure optimization
Aerospace intelligent materials and adaptive structures
Additive manufacturing (3D printing) in aerospace
Nanomaterials and micro-nano structure technology
Material surface engineering, coatings and protection technology
Material fracture, fatigue and damage mechanics
Material multi-scale modeling and simulation
Aerospace material preparation and processing technology
Green aerospace materials and recycling technology
Material performance characterization, testing and evaluation
Spacecraft thermal control materials and thermal management technology
Track 2: Mechanical and Electrical Control
Flight guidance, navigation and control (GNC)
Flight control system and autonomous flight technology
Astronautical electronic systems, subsystems and technologies
Mechatronics system design and integration
Mechanical system fault detection, diagnosis and fault-tolerant control
Intelligent sensing, multi-sensor fusion and information fusion
Aerospace electronic integrated technology
Embedded systems and on-board/in-flight computers
Intelligent control theory and methods
Unmanned aerial vehicles and micro-small aircraft (UAV/MAV) control
Navigation and positioning technology
Precise motion control and servo drive
On-board sensors and signal processing technology
Adaptive control and robust control
Human-computer interaction and intelligent decision-making system
Track 3: Structural Dynamics
Aerospace system overall design and aerodynamic layout
Aerodynamics, fluid dynamics and aerodynamic elasticity
Aircraft structure analysis and design
Structural dynamics and control
Astronautical structure and design
Flight mechanics and flight physics
Aerospace engine design (including turbomachinery, propulsion technology)
Hypersonic aircraft technology
Vibration and noise control
Structural health monitoring (SHM) and damage identification
Aerospace structure optimization and multidisciplinary optimization
Digital twin and virtual prototype technology
Aerospace system testing, measurement and verification
Aircraft performance analysis and simulation
Computational fluid dynamics (CFD) and numerical simulation
Space systems and satellite technology ......
Important Dates/重要日期
- Submission Deadline: 2026.9.11
- Registration Deadline: 2026.9.18
- Conference Date: 2026.9.26
- Notification Date: About a week after the submission
Submission Portal/投稿方式
Mail Address: icmbga_conf@163.com
If you have any question or need any assistance regarding the conference, please feel free to contact our conference specialists:
徐老师
+86-15680829715(微信同号)
1347638002
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