Interface Delamination of Bi-Material Structures with Different Industrial Applications in Energy Structures.
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Summary
The goal is to find via mathematical modelling the safety zone, the reliability of the structures, the detection of possible interface delamination in dependence of geometrical, material and physical parameters as well as the pull-out force of modern composites.
- Type
- article
- Published
- 2014-01-01
- Cited by
- 0
- References
- 11
- Access
- Open access
- OpenAlex
- https://openalex.org/W65396064
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:134416200
Keywords
Delamination (geology), Interface (matter), Parametric statistics, Mechanical engineering, Finite element method
References
- Hygropiezothermoelastic Interface Delamination of a Bi-material Plate.
- Nanotechnology in concrete – A review
- Interfacial Debonding of a Piezoelastic Bi-Material Structure Applicable for Wind Rotor Blades
- Thermostressed state of a piezoelectric bodywith a plane crack under symmetric thermal load
- Fracture Mechanics of Unidirectional Composites Using the Shear-Lag Model I: Theory
- Reinitiation of a crack reaching an interface
- The elasticity and strength of paper and other fibrous materials
- Interface delamination of bi‐material structure under time harmonic load. Cohesive behaviour of the interface
- Fracture Mechanics of Unidirectional Composites
- Building science for building enclosures
- Elastic-brittle and cohesive interface behaviour of a bi-material structure under dynamic time harmonic loading application to a wind turbine rotor blade.
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