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- W175770316 abstract "This chapter focuses on the hydrogen environment embrittlement (HEE) effects for three main classes of superalloys known as the nickel-based, cobalt-based and iron-based superalloys. For many superalloys, the HEE effects can occur over a much wider range of temperatures, with significant hydrogen embrittlement still evident at substantially higher temperatures than near room temperature. A comprehensive review of experimental data for HEE index is given, which is a useful concept to qualitatively evaluate the severity of hydrogen embrittlement prior to performing detailed material and fracture analysis for a specific hydrogen environment application. High pressure and temperature effects of hydrogen gas on superalloy properties such as tensile ductility, fracture, low cycle and high cycle fatigue, cyclic crack growth rate, and creep stress rupture have been analyzed with respect to the behavior trends established from the HEE index values. The compositional effects of nickel for hydrogen embrittlement of many Fe–Ni–Cr-based superalloys are also presented." @default.
- W175770316 created "2016-06-24" @default.
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- W175770316 date "2012-01-01" @default.
- W175770316 modified "2023-09-25" @default.
- W175770316 title "Hydrogen embrittlement of nickel, cobalt and iron-based superalloys" @default.
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- W175770316 doi "https://doi.org/10.1533/9780857093899.3.624" @default.
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