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Volumn 44, Issue 23, 2003, Pages 7199-7208
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Modeling of the viscoelastic behavior of amorphous polymers by the differential and integration fractional method: The relaxation spectrum H(τ)
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Author keywords
Fractional calculus; Physical aging; Poly(methyl methacrylate) viscoelasticity
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Indexed keywords
DYNAMIC MECHANICAL ANALYSIS;
GLASS TRANSITION;
HEAT TREATMENT;
VISCOELASTICITY;
AMORPHOUS POLYMERS;
POLYMETHYL METHACRYLATES;
GLASS;
POLY(METHYL METHACRYLATE);
ANALYTIC METHOD;
ARTICLE;
DIFFERENTIAL FRACTIONAL METHOD;
ELASTICITY;
EXTENDED FRACTIONAL SOLID MODEL;
GLASS TRANSITION TEMPERATURE;
HEAT TREATMENT;
HIGH TEMPERATURE PROCEDURES;
INTEGRATION FRACTIONAL METHOD;
LOW TEMPERATURE PROCEDURES;
MATHEMATICAL ANALYSIS;
MATHEMATICAL MODEL;
MECHANICS;
MOLECULAR MODEL;
PHENOMENOLOGICAL FRACTIONAL MODEL;
PHENOMENOLOGY;
POLYMERIZATION;
RELAXATION TIME;
SOLID;
STRESS;
VISCOELASTICITY;
POLYMETHYL METHACRYLATE;
VISCOELASTICITY;
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EID: 0141885346
PISSN: 00323861
EISSN: None
Source Type: Journal
DOI: 10.1016/j.polymer.2003.08.036 Document Type: Article |
Times cited : (32)
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References (36)
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