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Erschienen in: Metallurgical and Materials Transactions A 6/2013

01.06.2013

Plastic Flow and Microstructure Evolution during Thermomechanical Processing of a PM Nickel-Base Superalloy

verfasst von: S. L. Semiatin, K. E. McClary, A. D. Rollett, C. G. Roberts, E. J. Payton, F. Zhang, T. P. Gabb

Erschienen in: Metallurgical and Materials Transactions A | Ausgabe 6/2013

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Abstract

Plastic flow and microstructure evolution during sub- and supersolvus forging and subsequent supersolvus heat treatment of the powder-metallurgy superalloy LSHR (low-solvus, high-refractory) were investigated to develop an understanding of methods that can be used to obtain a moderately coarse gamma grain size under well-controlled conditions. To this end, isothermal, hot compression tests were conducted over broad ranges of temperature [(1144 K to 1450 K) 871 °C to 1177 °C] and constant true strain rate (0.0005 to 10 s−1). At low temperatures, deformation was generally characterized by flow softening and dynamic recrystallization that led to a decrease in grain size. At high subsolvus temperatures and low strain rates, steady-state flow or flow hardening was observed. These latter behaviors were ascribed to superplastic deformation and microstructure evolution characterized by a constant grain size or concomitant dynamic grain growth, respectively. During supersolvus heat treatment following subsolvus deformation, increases in grain size whose magnitude was a function of the prior deformation conditions were noted. A transition in flow behavior from superplastic to nonsuperplastic and the development during forging at a high subsolvus temperature of a wide (possibly bi- or multimodal) gamma-grain-size distribution having some large grains led to a substantially coarser grain size during supersolvus annealing in comparison to that produced under all other forging conditions.

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Fußnoten
1
Compressive strains, strain rates, and stresses are reported as positive quantities here and throughout the remainder of this work.
 
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Metadaten
Titel
Plastic Flow and Microstructure Evolution during Thermomechanical Processing of a PM Nickel-Base Superalloy
verfasst von
S. L. Semiatin
K. E. McClary
A. D. Rollett
C. G. Roberts
E. J. Payton
F. Zhang
T. P. Gabb
Publikationsdatum
01.06.2013
Verlag
Springer US
Erschienen in
Metallurgical and Materials Transactions A / Ausgabe 6/2013
Print ISSN: 1073-5623
Elektronische ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-013-1675-1

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