Experimental characterization and modeling of isothermal and nonisothermal physical aging in glassy polymer films.
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- Type
- dissertation
- Published
- 2009-01-01
- Cited by
- 2
- References
- 124
- Access
- Open access
- OpenAlex
- https://openalex.org/W171599656
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:137652910
Keywords
Materials science, Composite material, Viscoelasticity, Isothermal process, Glass transition
References
- Physical Aging and Shear Creep of Poly(carbonate)
- A Sign Control Method for Fitting and Interconverting Material Functions for Linearly Viscoelastic Solids
- Polymer viscoelasticity : stress and strain in practice
- Elastic and creep properties of filamentous materials and other high polymers
- Relaxation in Glass and Composites
- La contraction isotherme du volume des polymères amorphes
- Introduction to physical polymer science
- Creep and physical ageing of polypropylene: a comparison of models.
- Dependence of relaxation times of glassy polymers on their specific volume
- Changes of thermodynamic and dynamic mechanical properties of poly(methyl methacrylate) due to structural relaxation: low-temperature ageing and modelling
- Comparison of different functions for modelling the creep and physical ageing effects in plastics
- Isobaric volume and enthalpy recovery of glasses. II. A transparent multiparameter theory
- Free volume and the kinetics of aging of polymer glasses
- Recovering nonisothermal physical aging shift factors via continuous test data: Theory and
- Dynamics and mechanics below the glass transition: The non-equilibrium state
- Refractive index: A probe for monitoring volume relaxation during physical aging of glassy polymers
- Creep and physical aging of injection molded, fiber reinforced polypropylene
- Volume recovery near the glass transition temperature in poly(vinyl acetate): predictions of a coupling model
- Volume recovery in epoxy glasses subjected to torsional deformations: the question of rejuvenation
- Physical aging and the viscoelastic response of glassy polymers: Comparison of observations in mechanical and dilatometric tests
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