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Bioinspired improvement of laminated glass
Kyriaki Corinna Datsiou
Department of Engineering and Technology
School of Physics, Engineering & Computer Science
Materials and Structures
Centre for Future Societies Research
Centre for Engineering Research
Research output
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Keyphrases
Laminated Glass
100%
Bio-inspired
100%
Technological Improvement
33%
Brittleness
33%
Glass Plate
33%
Optoelectronic Properties
33%
Thermoelectric Properties
33%
Load Bearing Application
33%
Structural Failure
33%
Thermomechanical Properties
33%
Adhesively Bonded
33%
Chemical Properties
33%
Surface Defects
33%
Polymer Composites
33%
Catastrophic Failure
33%
Structural Applications
33%
User Safety
33%
Damage Tolerance
33%
Sources of Inspiration
33%
Thermo-optic
33%
Structural Integrity
33%
Mechanical Load
33%
Environmental Load
33%
Stiffness
33%
Public Structures
33%
Material Science
Chemical Property
100%
Damage Tolerance
100%
Brittleness
100%
Optical Property
100%
Surface Flaw
100%
Thermal Property
100%
Polymer Composite
100%
Engineering
Laminated Glass
100%
Glass Plate
33%
Bearing Application
33%
Environmental Load
33%
Mechanical Load
33%
Structural Application
33%
Catastrophic Failure
33%
Structural Failure
33%
Damage Tolerance
33%
Brittleness
33%
Structural Integrity
33%