4.6 Article

Evolution of Lattice Spacing of Gamma Double Prime Precipitates During Aging of Polycrystalline Ni-Base Superalloys: An In Situ Investigation

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SPRINGER
DOI: 10.1007/s11661-019-05536-y

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  1. Centre for Doctoral Training in Innovative Metal Processing (IMPaCT) - UK Engineering and Physical Sciences Research Council (EPSRC) [EP/L016206/1]

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Polycrystalline Ni-base superalloy Inconel 718 derives the strengthening mainly from Ni3Nb gamma '' phase. To investigate the evolution of lattice spacing of gamma '' precipitates, in situ neutron diffraction experiments were performed during aging heat treatment of two Inconel 718 bar samples at 780 degrees C for 8 hours. One sample was aged with a negligible applied stress (5 MPa) and the other with an applied tensile stress of 300 MPa. The diffraction data demonstrate three stages of lattice spacing evolution due to compositional and morphological changes during aging. (1) Stage I, the gamma lattice spacing decreases isotropically in the first hour of aging as the composition changes. (2) Stage II, the gamma lattice spacing decreases and the gamma '' lattice spacing increases between 1 and 5 hours of aging, at this stage compositional change on the lattice evolution weakens with aging time and the morphological change becomes comparable. (3) Stage III, as aging proceeds, compositional change is negligible, while morphological change is dominant; the gamma lattice spacing decreases in the longitudinal direction but increases in the transverse direction; in contrast, the converse occurs in gamma '' lattice spacing evolution.

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