Artículos de revistas
Damping behavior of hygrothermally conditioned carbon fiber/epoxy laminates
Fecha
2007-12-05Registro en:
Journal of Applied Polymer Science, v. 106, n. 5, p. 3143-3148, 2007.
0021-8995
1097-4628
10.1002/app.26834
2-s2.0-35948996969
4378078337343660
0000-0001-8338-4879
Autor
Instituto de Aeronáutica e Espaço (IAE)
Universidade Estadual Paulista (Unesp)
Institución
Resumen
Carbon fiber reinforced polymer composites have been used in wide variety of applications including, aerospace, marine, sporting equipment as well as in the defense sector due to their outstanding properties at low density. In many of their applications, moisture absorption takes place which may result in a reduction in mechanical properties even at lower temperature service. In this work, the viscoelastic properties, such as storage modulus (E′) and loss modulus (E″), were obtained through vibration damping tests for three carbon fiber/epoxy composite families up to the saturation point (6 weeks). Three carbon fiber/epoxy composites having [0/0] s, [0/90] s, and [±45] s orientations were studied. During vibration tests the storage modulus (E′) and loss modulus (E″) were monitored as a function of moisture uptake, and it was observed that the natural frequencies and E′ values decreased with the increase during hygrothermal conditioning due to the matrix plasticization. © 2007 Wiley Periodicals, Inc.
Materias
Ítems relacionados
Mostrando ítems relacionados por Título, autor o materia.
-
Damping behavior of hygrothermally conditioned carbon fiber/epoxy laminates
Botelho, E. C.; Pardini, L. C.; Rezende, M. C. -
Damping behavior of hygrothermally conditioned carbon fiber/epoxy laminates
Instituto de Aeronáutica e Espaço (IAE); Universidade Estadual Paulista (Unesp) (2007-12-05)Carbon fiber reinforced polymer composites have been used in wide variety of applications including, aerospace, marine, sporting equipment as well as in the defense sector due to their outstanding properties at low density. ... -
A comparative study of a self strain-monitoring carbon nanotube film and carbon fibers under flexural loading by electrical resistance changes
J.B. Pinto; S. Kern; José de Jesús Ku Herrera; J. Yasui; Valeria La Saponara; K. J. Loh1