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Effect of Ce addition on secondary phase transformation and mechanical properties of 27Cr-7Ni hyper duplex stainless steels SCIE SCOPUS

Title
Effect of Ce addition on secondary phase transformation and mechanical properties of 27Cr-7Ni hyper duplex stainless steels
Authors
Kim, SMKim, JSKim, KTPark, KTLee, CS
Date Issued
2013-06-20
Publisher
ELSEVIER SCIENCE SA
Abstract
This study aims to investigate the effects of Ce addition on the transformation behavior of alpha and chi secondary phases and corresponding mechanical properties of 27Cr-7Ni-2.5Mo-3.3W hyper duplex stainless steels. Four different steels containing various Ce content (0, 55, 110 and 450 ppm) were subjected to solid-solution heat treatment and subsequent isothermal annealing at temperature range of 873-1273 K for 1-1000 min. In the solid-solution heat-treated steels where secondary phases were not formed, tensile strength was slightly increased in the Ce added specimens, but Charpy impact toughness varied depending on the size and volume fraction of inclusion. Subsequent isothermal annealing resulted in the precipitation of secondary phases in all steels. However, when a small amount (55 and 110 ppm) of Ce was added, precipitation was considerably delayed which was attributed to the homogeneous distribution of Ce. On the other hand, in the high (450 ppm) Ce content steel, Ce-rich particles were formed resulting in extremely low Ce concentration in the matrix, which could not retard the precipitation of secondary phases. Time-temperature transformation diagram for the precipitation of either a (1%) or chi phase (0.5%) was well matched with the 50% toughness reduction curve of the steel. It was concluded that optimum Ce concentration with its homogeneous distribution in the matrix is the most effective at retarding the formation of secondary phases and therefore to prevent the degradation of mechanical properties. (C) 2013 Elsevier B.V. All rights reserved.
Keywords
Duplex stainless steel; Cerium; Sigma phase; chi Phase; ITT diagram; Mechanical properties; SIGMA-PHASE; ANNEALING TEMPERATURE; CHI-PHASE; PRECIPITATION; STABILITY; CORROSION; KINETICS
URI
https://oasis.postech.ac.kr/handle/2014.oak/14663
DOI
10.1016/J.MSEA.2013.02.044
ISSN
0921-5093
Article Type
Article
Citation
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, vol. 573, page. 27 - 36, 2013-06-20
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