4.7 Article

Hot tensile deformation behaviors and fracture characteristics of a typical Ni-based superalloy

Journal

MATERIALS & DESIGN
Volume 55, Issue -, Pages 949-957

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.matdes.2013.10.071

Keywords

Ni-based superalloy; Plastic deformation; Deformation mechanism; Fracture morphology

Funding

  1. National Natural Science Foundation of China [51375502]
  2. 973 program [2013CB035801]
  3. Sheng-hua Yu-ying Program of Central South University
  4. Fundamental Research Funds for the Central Universities of Central South University China [2013zzts194]

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The hot tensile deformation behaviors and fracture characteristics of a typical Ni-based superalloy are studied by uniaxial tensile tests under the deformation temperature range of 920-1040 degrees C and strain rate range of 0.01-0.001 s (1). Effects of deformation parameters on the flow behavior, microstructural evolution and fracture characteristics are discussed in detail. The results show that the flow behaviors are significantly affected by the deformation temperature, strain and strain rate. Under relatively low deformation temperatures (920, 950 and 980 degrees C), the flow curves are composed of three distinct stages, i. e., work hardening, steady stress and flow softening stages. The flow curves show the typical DRX characteristics under relatively high deformation temperatures (1010 and 1040 degrees C). With the increase of deformation temperature or the decrease of strain rate, the fraction of recrystallized grains increases. The synthetical effects of localized necking and microvoid coalescence cause the fracture of the studied superalloy under all the deformation conditions. delta phase (Ni-3 Nb) and carbides are the nucleus for the formation of microvoids. Also, delta phase plays an important role in the coalescence of microvoids. (C) 2013 Elsevier Ltd. All rights reserved.

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