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- W1526056466 abstract "An important aspect of nuclear fuel rod cladding is its ability to withstand, throughout its lifetime, internal pressure loads during steady-state operation, transients, and accidents. Consideration is now being given to the use of silicon carbide duplex tubes as a replacement for the existing use of zirconium alloys. This project investigated the mechanical response of various silicon carbide tubular structures when subjected to internal pressurization using an expanding internal plug method. According to this test method, an incompressible polyurethane plug, fitted inside the test specimen, is subjected to axial compressive loading, which results in the internal pressurization of the test specimen. Monolithic tubes manufactured were tested along with a series of fiber-reinforced composite tubular test specimens and duplex tubes comprised of a monolithic tube that is surrounded by a fiber-reinforced composite. The test results showed that: • The monolith test specimens failed at about 0.2% tangential strain and the values of Young's modulus obtained were consistent with those published in the literature. • The duplex test specimens also failed at about the same strain when the inner monolithic SiC failed. However, they exhibited a graceful mode of failure (no brittle fracture of the duplex test specimen) with the composite layer holding the structure in one piece. • One set of composite-only test specimens exhibited a load-carrying capability lower than that of the monolithic SiC tubes, and tended to fracture in several pieces at low strain values." @default.
- W1526056466 created "2016-06-24" @default.
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- W1526056466 date "2008-03-26" @default.
- W1526056466 modified "2023-09-25" @default.
- W1526056466 title "Strength Testing of Monolithic and Duplex Silicon Carbide Cylinders in Support of Use as Nuclear Fuel Cladding" @default.
- W1526056466 doi "https://doi.org/10.1002/9780470291344.ch12" @default.
- W1526056466 hasPublicationYear "2008" @default.
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