Caracterização viscoelástica por meio de ensaios de fluência e ruptura por fluência de compósitos poliméricos de matriz de resina epoxídica e fibra de carbono / VISCOELASTIC CHARACTERIZATION OF CARBON FIBER-EPOXY COMPOSITES BY CREEP AND CREEP RUPTURE TESTS

AUTOR(ES)
DATA DE PUBLICAÇÃO

2009

RESUMO

One of the main requirements for the use of fiber-reinforced polymer matrix composites in structural applications is the evaluation of their behavior during service life. The warranties of the integrity of these structural components demand a study of the time dependent behavior of these materials due to viscoelastic response of the polymeric matrix and of the countless possibilities of design configurations. In the present study, creep and creep rupture test in stress were performed in specimens of unidirectional carbon fiber-reinforced epoxy composites with fibers orientations of 60º and 90º, at temperatures of 25 and 70 ºC. The aim is the viscoelastic characterization of the material through the creep curves to some levels of constant tension during periods of 1000 h, the attainment of the creep rupture envelope by the creep rupture curves and the determination of the transition of the linear for non-linear behavior through isochronous curves. In addition, comparisons of creep compliance curves with a viscoelastic behavior prediction model based on Schapery equation were also performed. For the test, a modification was verified in the behavior of the material, regarding the resistance, stiffness and deformation, demonstrating that these properties were affected for the time and tension level, especially in work temperature above the ambient. The prediction model was capable to represent the creep behavior, however the determination of the equations terms should be considered, besides the variation of these with the applied tension and the elapsed time of test.

ASSUNTO(S)

fibra de carbono viscoelasticidade fluência resina epoxídica viscoelasticidade resina epoxídica fluência fibra de carbono

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