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Quantitative precipitate classification and grain boundary property control in Co/Ni-base superalloys

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arxiv 2009.00948 v1 pith:ZTMZ7EMQ submitted 2020-09-02 cond-mat.mtrl-sci

Quantitative precipitate classification and grain boundary property control in Co/Ni-base superalloys

classification cond-mat.mtrl-sci
keywords structurealloysbackscatterborideboundarycarbidechemicalchemistry
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A correlative approach is employed to simultaneously assess structure and chemistry of (carbide and boride) precipitates in a set of novel Co/Ni-base superalloys. Structure is derived from electron backscatter diffraction (EBSD) with pattern template matching, and chemistry obtained with energy dispersive X-ray spectroscopy (EDS). It is found that the principal carbide in these alloys is Mo and W rich with the M6C structure. An M2B boride, also exhibiting Mo and W segregation is observed at B levels above approximately 0.085 at.%. These phases are challenging to distinguish in an SEM with chemical information (EDS or backscatter Z-contrast) alone, without the structural information provided by EBSD. Only correlative chemical and structural fingerprinting is necessary and sufficient to fully define a phase. The identified phases are dissimilar to those predicted using ThermoCalc. We additionally perform an assessment of the grain boundary serratability in these alloys, and observe that significant amplitude is only obtained in the absence of pinning intergranular precipitates.

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