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Cavitation erosion of a spinodally decomposed wrought duplex stainlesssteel in a benign environment
Ai, W.; Lo, K. H.; Kwok, C. T.
2019-04-01
Source PublicationWear
ISSN0043-1648
Pages111-121
Abstract

This paper looks into the possibility of using spinodal decomposition (SD) to improve the cavitation erosion (CE)resistance of a wrought duplex stainless steel (DSS) in benign environments. The hardness increase of the ferrite associated with SD improves CE resistance of the DSS. Mechanical properties obtained from tensile curves (e.g.,tensile toughness and strain-hardening capacity) do not appear to correlate with CE resistance. Grain boundaries are prime initiation sites of CE damage. Planar deformation features are also places where CE damage begins. In both the spinodally-decomposed and the solution-treated states, the ferrite of the DSS sustains more CE damage than does the austenite. The austenite actually acts as barrier to CE damage propagation

KeywordCavitation Erosion Spinodal Decomposition Duplex Stainless Steel Tensile
URLView the original
Language英語English
The Source to ArticlePB_Publication
Document TypeJournal article
CollectionUniversity of Macau
Corresponding AuthorLo, K. H.
Recommended Citation
GB/T 7714
Ai, W.,Lo, K. H.,Kwok, C. T.. Cavitation erosion of a spinodally decomposed wrought duplex stainlesssteel in a benign environment[J]. Wear, 2019, 111-121.
APA Ai, W.., Lo, K. H.., & Kwok, C. T. (2019). Cavitation erosion of a spinodally decomposed wrought duplex stainlesssteel in a benign environment. Wear, 111-121.
MLA Ai, W.,et al."Cavitation erosion of a spinodally decomposed wrought duplex stainlesssteel in a benign environment".Wear (2019):111-121.
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