Keyphrases
Aluminum Fiber
8%
Beam Element
33%
Behavior Performance
8%
Bicycle Frame
100%
Bicycle Geometry
16%
Brazing
8%
Carbon Fiber
8%
Competition Rules
8%
Compliance Behavior
8%
Composite Steel
8%
Composite-aluminum
8%
Diamond
8%
Existing Frame
25%
FE Analysis
50%
Fillet
8%
Finite Element Analysis
16%
Finite Element Model
25%
Frame Design
16%
Frame Geometry
100%
Frame Material
8%
Frame Stiffness
8%
Further Analysis
25%
Geometric Parameters
16%
Handlebar
16%
High Loading Capacity
8%
Historical Data
8%
Increasing Participation
8%
Iterative Improvement
8%
Joining Method
8%
Lateral Displacement
25%
Lateral Stiffness
41%
Load Adjusting
8%
Load Case
16%
Load Distribution
8%
Load Transfer
8%
Loading Conditions
25%
Loading Cycles
8%
Long Head
16%
Mountain Bicycle
8%
Optimization Solution
25%
Optimized Value
25%
Out-of-plane Loading
8%
Overall Stiffness
8%
Parametric Finite Element Analysis
50%
Performance Improvement
8%
Physical Behavior
16%
Profile Changes
8%
Right-sided
8%
Road Bicycle
33%
Sampling Methods
8%
Stiffness
8%
Stiffness Behavior
8%
Stiffness Characteristics
16%
Stochastic Approach
8%
Strength Capabilities
8%
Strength Requirement
8%
Structural Frames
8%
Titanium Aluminum Alloy
8%
Titanium Fiber
8%
Tube Angle
25%
Tube Geometry
25%
Tube Length
25%
Vertical Displacement
25%
Vertical Load
8%
Engineering
Alternative Material
25%
Beam Element
33%
Bicycle Frame
100%
Constrains
8%
Diamond
8%
Finite Element Analysis
66%
Geometric Parameter
16%
Historical Data
8%
Iterative Improvement
8%
Key Frame
8%
Lateral Displacement
25%
Lateral Stiffness
41%
Limitations
8%
Load Capacity
8%
Load Case
16%
Load Distribution
8%
Load Transfer
8%
Loading Condition
25%
Loading Cycle
8%
Physical Behavior
16%
Road
41%
Sampling Technique
8%
Show Value
25%
Stochastic Approach
8%
Strength Requirement
8%
Structural Frames
8%