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- W135898777 abstract "This paper is concerned with the hygrothermal effects on tensile creep behavior of a glass-fiber reinforced epoxy composite material. In order to describe the creep characteristics of the composite and composite laminates, a typical glass-epoxy system was selected and examined experimentally by means of tensile static and creep tests which were conducted in controlled humidity-temperature environments. The test specimens were made from Scotchply 1002, a product of the 3-M Company. Unidirectional (both 0° and 90°), (±45)S crossply, and quasi-isotropic ([90/0/±45]S) laminates were fabricated according to the Vender's recommended procedures. Static tests were performed first in order to establish the baseline data for the various laminates. They were then followed by tensile creep tests at various load-levels with controlled temperature and moisture conditions. The test temperatures ranged from 75°F (room temperature) to 215°F and the moisture contents in the various test specimens ranged from 0% (dry) to 1.0% (the saturated moisture content for the specimens is approximately 1.5%). Based on the test results on (0°), (90°) and (±45°)S laminates, which are termed here as “basic laminates”, a simple approximate method was developed to calculate the creep response of any laminates which contain the “basic laminates” in their lamination structure. The method is essentially a macromechanics approach which models the behavior of a laminate upon the knowledge of how the individual elemental components, i.e., the “basic laminates” in the lamination structure, would behave. It is shown that the calculated results correlated quite well with the experimental measurement." @default.
- W135898777 created "2016-06-24" @default.
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- W135898777 date "1980-01-01" @default.
- W135898777 modified "2023-09-23" @default.
- W135898777 title "CREEP BEHAVIOR OF GLASS-EPOXY COMPOSITE LAMINATES UNDER HYGROTHERMAL CONDITIONS" @default.
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- W135898777 doi "https://doi.org/10.1016/b978-1-4832-8370-8.50047-4" @default.
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