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九州大学 ホーム
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航空宇宙機構造強度
工学研究院
航空宇宙工学部門
概要
フィンガープリント
ネットワーク
プロファイル
(3)
研究成果
(111)
フィンガープリント
航空宇宙機構造強度が活動している研究トピックを掘り下げます。これらのトピックラベルは、この組織のメンバーの研究成果に基づきます。これらがまとまってユニークなフィンガープリントを構成します。
並べ替え順
重み付け
アルファベット順
Engineering
Lamination
58%
Models
37%
Impact Damage
35%
Cross-Ply Laminate
32%
Experiments
31%
Transverse Crack
28%
Fiber
27%
Cohesive Element
22%
Free Edge
21%
High Velocity
20%
Failure (Mechanical)
20%
Energy Release Rate
20%
Finite Element Modeling
18%
Surfaces
18%
Impact Toughness
18%
Fracture
18%
Crack
17%
Composite
16%
Fibre Bragg Grating Sensor
16%
Cyclic Loading
15%
Transverse Cracking
15%
Carbon-Fiber-Reinforced Plastic
14%
Simulation
14%
Tensiles
14%
Experimental Result
14%
Low Velocity
13%
Case Depth
13%
Fatigue Damage
12%
Stress-Strain Relations
12%
Embedded Fiber
12%
Nanoimprint Lithography
12%
Ply Crack
12%
Interlayer
12%
Prediction
12%
Fracture Criterion
11%
Impact Test
11%
Evaluation
11%
Applications
11%
Properties
10%
Open Hole
10%
Damage Analysis
10%
Cohesive Zone Model
10%
Estimation
9%
Computer Simulation
9%
Deformation
9%
Gears
9%
Continuum Damage Mechanic
9%
Fatigue Behavior
9%
Piercing
9%
Friction
9%
Edge Delamination
9%
Mechanic Model
8%
Bends
8%
Accuracy
8%
Starting Material
8%
Reflection Spectrum
8%
Composite Structure
8%
Microstructure
7%
Ply Angle
7%
Induced Delamination
7%
Reduction
7%
Fracture Toughness
7%
Fracture Toughness Test
7%
Numerical Study
7%
Deterministic Design
7%
Design
7%
Loading Direction
7%
Damage Variable
6%
Wings
6%
Forwarder
6%
Assuming
6%
High Temperature
6%
Steel
6%
Failure Mechanism
6%
Characteristics
6%
Soft X-Ray
6%
X-Ray Radiography
6%
Tensile Test
6%
Rule of Mixture
6%
Wind
6%
Axis Angle
6%
Shearing Strength
6%
Peel Stress
6%
Bridging
6%
Pin Joint
6%
Stress Point
6%
Void Growth
6%
Strain
6%
Splines
6%
Flange
6%
S-N Curve
6%
Punching
6%
Forward Flight
6%
Dimensional Analysis
6%
Matrix Cracking
6%
Spur Gears
6%
Microchannel
6%
Fabrication
6%
Frictional Effect
6%
Pumping System
6%
Material Science
Carbon Fiber Reinforced Plastics
100%
Delamination
71%
Mechanical Strength
47%
Composite Laminate
46%
Laminate
37%
Fiber
36%
Composite Material
36%
Material
26%
Surface
24%
Gel
18%
Crack Growth
16%
Fracture Toughness
15%
Polyetheretherketone
15%
Epoxy
15%
Crack
13%
Fatigue Damage
12%
Damage Mechanics
12%
Finite Element Methods
12%
Particle
11%
Materials Property
11%
Strain
10%
Finite Element Modeling
9%
Metal
9%
Compressive Strength
8%
Characterization
8%
Microstructure
7%
Plastic Laminate
7%
Polysiloxane
7%
Thermoplastics
7%
Electron Backscatter Diffraction
7%
Ceramics
7%
Reinforced Plastic
7%
Resin
6%
Spring Steel
6%
Resin Transfer Molding
6%
Patterning
6%
Flow Analysis
6%
Actuator
6%
Permeability
6%
Void Growth
6%
Young's Modulus
6%
Matrix Cracking
6%
Inverse Analysis
6%
Velocity
6%
Glass
6%
Nanoimprint Lithography
6%
Temperature
6%
Mechanical Property
5%
Reinforcement
5%
Liquid
5%
Large Deformation
5%
Mechanical Joint
5%
Carbon Fiber
5%
Physics
Carbon Fiber Reinforced Plastics
47%
Cracks
31%
Wave Propagation
27%
Ultrasonic Radiation
25%
Model
24%
Impact Damage
21%
Finite Element Methods
20%
Composite
20%
Gels
19%
Failure
19%
Composite Material
16%
Impact
15%
Magnetic Fields
14%
Actuators
13%
Area
12%
Utilization
12%
Particle
11%
Evaluation
11%
Strands
10%
Deformation
9%
Pulsed Laser
9%
Simulation
9%
Finite Element Modeling
9%
Joint
9%
Extended Finite Element Method
9%
Ultrasonics
9%
Diagrams
9%
Transducer
8%
Differences
8%
Laser
8%
Rotation
8%
Strain Distribution
7%
Statics
7%
Delamination
7%
Low Speed
7%
Airfoil
7%
Impact Tests
7%
Biomimetics
6%
Stress Distribution
6%
Networks
6%
Carbon Fiber
6%
Optimization
6%
Vortex Shedding
6%
Elastomers
6%
Interface Property
6%
Flexibility
6%
Dimensional Analysis
6%
Detection
6%
Fiber Bragg Grating
6%
Fibers
6%
Fatigue Behavior
6%
Arrays
6%
Active Control
6%
Topology
5%
Amplitudes
5%
Behavior
5%
Images
5%
Spectra
5%
Speed
5%
Fracture
5%
Locomotion
5%
Position (Location)
5%