748 K (475 °C) Embrittlement of Duplex Stainless Steel: Effect on Microstructure and Fracture Behavior

被引:0
|
作者
Cem Örnek
M. G. Burke
T. Hashimoto
D. L. Engelberg
机构
[1] The University of Manchester,Materials and Performance Centre, School of Materials
[2] The University of Manchester,Corrosion and Protection Centre, School of Materials
[3] KTH Royal Institute of Technology,Division of Surface and Corrosion Science
关键词
Ferrite; Austenite; Stress Corrosion Crack; Duplex Stainless Steel; Interphase Boundary;
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中图分类号
学科分类号
摘要
22Cr-5Ni duplex stainless steel (DSS) was aged at 748 K (475 °C) and the microstructure development correlated to changes in mechanical properties and fracture behavior. Tensile testing of aged microstructures confirmed the occurrence of 748 K (475 °C) embrittlement, which was accompanied by an increase of strength and hardness and loss of toughness. Aging caused spinodal decomposition of the ferrite phase, consisting of Cr-enriched α″ and Fe-rich α′ and the formation of a large number of R-phase precipitates, with sizes between 50 and 400 nm. Fracture surface analyses revealed a gradual change of the fracture mode from ductile to brittle delamination fracture, associated with slip incompatibility between ferrite and austenite. Ferrite became highly brittle after 255 hours of aging, mainly due to the presence of precipitates, while austenite was ductile and accommodated most plastic strain. The fracture mechanism as a function of 748 K (475 °C) embrittlement is discussed in light of microstructure development.
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页码:1653 / 1665
页数:12
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