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- W2260991544 abstract "The microstructural evolution of the Ni-based superalloy CMSX-4 including the change ingamma prime size and distribution and the degree of rafting has been examined in detail usingfield emission gun scanning electron microscopy (FEGSEM) and transmission electronmicroscopy (TEM) after high temperature degradation and rejuvenation heat treatments. Therelationship between the microstructure, mechanical properties and the applied heat treatmentprocedures has been investigated. It is shown that there are significant differences in the raftingbehaviour, the size of the ‘channels’ between the gamma prime particles, the degree of raftingand the size of the tertiary gamma prime particles in each of the different microstructuralconditions studied. Chemical segregation investigations were carried out to establish the cause ofreduced mechanical properties of the rejuvenated sample after high temperature degradationcompared to an as-received sample after the same degradation procedure. The results indicate thatalthough the microstructure of as-received and rejuvenated samples were similar, the chemicalsegregation was more pronounced in the rejuvenated samples, suggesting that chemicalsegregation from partitioning of the elements during rejuvenation was not completely eliminated.The aim of this research is to provide greater understanding of the suitability of rejuvenation heattreatments and their role in the extension of component life in power plant applications." @default.
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- W2260991544 date "2014-01-01" @default.
- W2260991544 modified "2023-09-23" @default.
- W2260991544 title "Microstructural evolution in a nickel based superalloy for power plant applications as a consequence of high temperature degradation and rejuvenation heat treatments" @default.
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