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Author:

Wang, Man (Wang, Man.) | Sun, Hongying (Sun, Hongying.) | Zhou, Zhangjian (Zhou, Zhangjian.)

Indexed by:

EI Scopus SCIE

Abstract:

Two kinds of Fe-18Ni-12Cr-based alumina-forming austenitic (AFA) steels with ultralow carbon content were prepared by vacuum induction melting. Creep rupture tests were carried out with the applied stress range between 80 and 180 MPa at the target application temperature of 700 °C. Microstructure evolution was characterized using glancing X-ray diffraction, scanning electron microscopy equipped with a detector of electron backscatter diffraction and transmission electron microscope. Compared with 18-12-Al, 18-12-AlNb exhibited superior creep properties including ten times longer creep rupture life (trup) and one magnitude smaller minimum creep rate (Ε min). For example, the Ε min at the applied stress of 140 MPa was 4.4 × 10–5 and 2.1 × 10–4 h–1 for 18-12-AlNb and 18-12-Al, respectively. The strengthening effect of B2-NiAl would weaken at 700 °C due to its ductile-to-brittle transition. The addition of Nb not only promoted the formation of Laves-Fe2(Mo,Nb), but also resulted in formation of nanoscale NbC. The GB Laves-Fe2(Mo,Nb) did not impair the creep ductility by strengthening GBs, and all the creep ruptured AFA steels exhibited typical ductile fracture mode. The GB Laves-Fe2(Mo,Nb) and NbC precipitates contributed to the superior creep resistance of 18-12-AlNb. © 2021, The Author(s), under exclusive licence to Springer Science+Business Media, LLC part of Springer Nature.

Keyword:

Low carbon steel Carbon Austenite Ductile fracture Scanning electron microscopy Vacuum applications Aluminum oxide Nickel steel Strengthening (metal) Creep resistance Chromium metallography Austenitic stainless steel Niobium compounds X ray detectors Alumina Chromium steel Ductility Transmission electron microscopy Nickel metallography Ternary alloys Creep Chromium alloys

Author Community:

  • [ 1 ] [Wang, Man]School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing; 100083, China
  • [ 2 ] [Wang, Man]Key Laboratory of Advanced Functional Materials, Ministry of Education, Faculty of Materials and Manufacturing, Beijing University of Technology, Beijing; 100124, China
  • [ 3 ] [Sun, Hongying]School of Mechanical Engineering, Anyang Institute of Technology, Anyang; 455002, China
  • [ 4 ] [Zhou, Zhangjian]School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing; 100083, China

Reprint Author's Address:

  • [zhou, zhangjian]school of materials science and engineering, university of science and technology beijing, beijing; 100083, china

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Source :

Journal of Materials Science

ISSN: 0022-2461

Year: 2021

Issue: 15

Volume: 56

Page: 9445-9457

4 . 5 0 0

JCR@2022

ESI Discipline: MATERIALS SCIENCE;

ESI HC Threshold:116

JCR Journal Grade:2

Cited Count:

WoS CC Cited Count: 0

SCOPUS Cited Count: 9

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 8

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