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Blast Testing and Modelling of Composite Structures
Søren Giversen
Research output
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Book/Report
›
Ph.D. thesis
2469
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Dive into the research topics of 'Blast Testing and Modelling of Composite Structures'. Together they form a unique fingerprint.
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Physics
Act
7%
Alternatives
7%
Behavior
23%
Blast Loads
38%
Composite
100%
Composite Material
7%
Cores
30%
Correlation
7%
Deflection
23%
Delamination
7%
Differences
7%
Digital Image
7%
Failure
7%
Fibers
15%
Foams
30%
Fracture Strength
7%
High Speed
7%
High Strength
23%
Impact
15%
Independent Variables
7%
Light
15%
Magnitude
7%
Maneuverability
7%
Membrane
7%
Model
76%
Motivation
7%
Parameter
7%
Performance
7%
Pressure
53%
Pressure Distribution
7%
Pressure Measurement
7%
Region
7%
Responses
46%
Rupturing
7%
Safety
7%
Speed
7%
Steel
23%
Strain Rate
100%
Substitutes
7%
Variations
7%
Vehicle
30%
Engineering
Blast Load
38%
Blast Loading
7%
Blast Pressure
23%
Cohesive Zone
7%
Core Interface
7%
Deflection
23%
Design
15%
Digital Image Correlation
7%
Energy Engineering
15%
Enhanced Model
7%
Epoxy Laminate
15%
Explosive Charge
7%
Facilities
7%
Failure (Mechanical)
7%
Fiber
7%
Fibre-Reinforced Composite
7%
Flexural Rigidity
7%
Fluid-Structure Interaction
7%
Foam
15%
Foam Core
15%
Fracture Resistance
7%
Functionality
7%
High Speed
7%
High Strain Rate
7%
High Strength Steel
23%
Lamination
30%
Large Strain
7%
Layer Interface
23%
Load Model
7%
Maneuverability
7%
Material Model
7%
Measurement Data
7%
Measurer
7%
Membrane
7%
Model Data
15%
Models
38%
Obtains
7%
Panel Response
38%
Performance
7%
Pressure Data
7%
Pressure Distribution
7%
Properties
7%
Sandwich Panel
92%
Small Scale
15%
Strain Rate Sensitivity
7%
Surfaces
15%
Test Data
7%
Test Panel
7%
Test Pressure
7%
Test Result
7%
Test Series
7%
Testing
100%
Thickness
7%
Material Science
Composite Structure
100%
Correlation
7%
Delamination
7%
Epoxy
30%
Fiber
7%
Fiber-Reinforced Composite
7%
Fluid-Structure Interaction
7%
Foam
30%
Fracture Toughness
7%
High Strength Steel
23%
Material
30%
Material Testing
15%
Membrane
7%
Rigidity
7%
Skin
15%
Surface
15%