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Institute of Physics - RennesMechanics and Glasses Research Team
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Keywords
Fiber strength
Contact voltage
Fretting corrosion
Strain-induced crystallization
Fretting-corrosion
Damage
Mechanical dissipation
Shock waves
Temperature effects
Hyperelasticity
Inverse identification
Aluminum alloy
Fibers
Mechanical properties
Elasticity
Calorimetry
Thermoelastic stress analysis
Fracture
Identification
Digital image correlation
Spherical indentation
Glasses
Chalcogenide glass
Atomic force microscopy
Copper
Hysteresis
Glass
Composite
Infrared thermography
Adhesion
Toughness
Cracking
Chalcogenide glasses
Fissuration
Modeling
RFDA
Optical fibers
Activation volume
Quantitative calorimetry
Dynamic fracture
Aging
Creep
Design of experiments
Crystallization
Elastic moduli
Soutenance2019
Poisson's ratio
Heat source reconstruction
Soutenance2018
Structure
Hardness
Granular material
Inorganic oxide glass
Viscoelasticity
Mechanical behavior
Elastomer
Amorphous materials
Silicon oxycarbide
Intrinsic dissipation
3D printed TPE
Bending test
Laser shock
Interfacial adhesion
Fatigue
Grinding
Optical properties
Indentation
Contact resistance
Leather
Bending tests
Chalcogenide
Verre
Crack growth
Plasticity
Soutenance2016
Coating
Temperature
Smart composite materials
PhDtitle
Densification
Rubber
Thin films
Stress corrosion parameter
Nanoindentation
Composite materials
Lifetime reinforcement
Natural rubber
Experimental mechanics
Optical fiber
Fracture toughness
Thermoelastic coupling
Heat source
Viscosity
Constitutive models
Glass transition
Crystallinity
Glass-ceramic
Strain rate
Self-heating
Nitrile rubber