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- W2014038103 abstract "Abstract 1. 1. To study grain boundary cavitation during creep, especially at early stages of cavity growth, new techniques are required. 2. 2. A potential technique which, given the general susceptibility of most metals to LME attack, may be applicable to most metals involves (a) the preparation of a given microstructure, (b) exposing this material under load to liquid metal, (c) after cleaning away the LME agent, examining the intergranular fracture surface in the SEM. 3. 3. An fcc solid-solution alloy, Ni-4 W, was chosen for study. Two liquid metals, lead and thallium, were found to be very strong embrittling agents for this alloy, and, perhaps other nickle-base alloys. 4. 4. This alloy was cavitated during creep deformation, then exposed to liquid lead, allowing the grain boundary cavities to be examined, indicating promise as a quantitative technique to study the creep cavitation process. 5. 5. Cavitation was found to be heterogeneous, with cavity concentration decreasing away from the specimen surface. This is consistent with an environmental, impurity-induced enhancement of cavity nucleation and/or growth near the surface." @default.
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- W2014038103 date "1981-05-01" @default.
- W2014038103 modified "2023-09-27" @default.
- W2014038103 title "Creep cavity observation using liquid metal embrittlement" @default.
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- W2014038103 doi "https://doi.org/10.1016/0036-9748(81)90189-7" @default.
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