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- W137713637 abstract "The low electrical and thermal conductivity, high specific strength, and excellent fatigue behavior of fiber-reinforced composites make them a necessary supplement and sometimes a favored alternative to metals for lowtemperature technology. This survey details these features and also examines the drawbacks of high brittleness and low interlaminar shear strength of such polymers as fiberglass, carbon-fiber, and Kevlar-fiber expoxies. Stress-strain curves, tables which list the stiffness, strength, fatigue, thermal-insular, electrical-insular, thermal contraction and workability properties at low temperatures, and microphotographs of those composites are presented. Among the results are the findings that carbon-fiber composites exhibit a very high mechanical stiffness or strength, comparable to or higher than that of steel, and that at low temperatures carbon-fiber composites have a much higher insulation capacity than steel. A combination of strong carbon-fibers and tough glass fibers results in a superior composite than either fiber alone." @default.
- W137713637 created "2016-06-24" @default.
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- W137713637 date "1982-01-01" @default.
- W137713637 modified "2023-09-24" @default.
- W137713637 title "Reinforced ploymers at low temperatures" @default.
- W137713637 hasPublicationYear "1982" @default.
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