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- W2586150961 abstract "This chapter examines stressed oxidation and scale crystallization kinetics of advanced SiC fibers at elevated temperature in steam. Advanced aerospace applications such as aircraft turbine engine components, hypersonic flight vehicles, and spacecraft reentry thermal protection systems require structural materials that have superior mechanical properties in various strenuous and high-temperature environment. The gauge section of the fiber tow specimen is located inside the susceptor with the specimen ends passing through slots in the susceptor end caps. For testing in steam, steam is generated using deionized water and supplied to the susceptor through a feeding tube in a continuous flow with a slight positive pressure, expelling the dry air and producing a near 100% steam environment inside the susceptor. A cold gripping method is used in all tests in order to avoid high-temperature contact and thus a possible thermo-chemical interaction between the fiber and other material. Steam is chemically altered as it travels upwards along the fiber tow, extracting silicon from the fiber tow to become saturated with silicic acid (Si(OH)4) as it reaches the top of the susceptor." @default.
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- W2586150961 date "2017-02-01" @default.
- W2586150961 modified "2023-10-14" @default.
- W2586150961 title "Facility for Testing SiC Fiber Tows at Elevated Temperature in Silicic Acid‐Saturated Steam" @default.
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- W2586150961 doi "https://doi.org/10.1002/9781119320104.ch9" @default.
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