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This paper describes results from combined experimental and theoretical studies of compressive failures of polymer matrix glass reinforced composites which have undergone thermal loading. The materials discussed herein are composed of vinylester resins and E-glass, quasi-isotropic, fabrics with relatively high fiber densities in the 55 volume percent range. Experimental studies have included structural collapse under combined thermal (i.e. fire) and mechanical loading. The theoretical studies include detailed finite element simulations of panel deformation and collapse to be compared with the experimental observations. The appoach to the development of aquantitatively methodology for structural fire protection is discussed. The model preditions are compared with experimental and the numerical simulations
This paper describes results from combined experimental and theoretical studies of compressive failures of polymer matrix glass reinforced composites which have undergone thermal loading. The materials discussed herein are composed of vinylester resins and E-glass, quasi-isotropic, fabrics with relatively high fiber densities in the 55 volume percent range. Experimental studies have included structural collapse under combined thermal (i.e. fire) and mechanical loading. The theoretical studies include detailed finite element simulations of panel deformation and collapse to be compared with the experimental observations. The appoach to the development of aquantitatively methodology for structural fire protection is discussed. The model preditions are compared with experimental and the numerical simulations
Fire degradation of fiber composites
Zersetzung von Faser-Verbundwerkstoffen durch Feuer
Asaro, R.J. (Autor:in)
Marine Technology ; 34 ; 197-210
1997
14 Seiten, 19 Bilder, 9 Quellen
Aufsatz (Zeitschrift)
Englisch
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