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- W4308209436 endingPage "108033" @default.
- W4308209436 startingPage "108033" @default.
- W4308209436 abstract "Friction stir processing (FSP) was employed as a post-surface processing technique to modify the tribological and corrosion behavior of cold-sprayed (CS) 316 L SS deposits. Results indicate that the effect of FSP induced an austenitic phase transformation due to the combination of frictional heat and plastic deformation. Consequentially, the friction of the CS deposit after FSP decreased from by 8.3%. Similarly, the wear rate was reduced by 55.1%. These properties were improved mostly due to the closure of pores (yielding a 99.97% density) and localized grain refinement. Electrochemical measurements revealed that the corrosion rate was reduced by ~65%. Also, the pitting corrosion resistance (E pit – E corr ) increased, which can be majorly attributed to the densified surface and full austenitic phase transformation after FSP. Compared to the other samples, the highest polarization resistance at the corrosion potential (R pol ) was obtained for the FSP CS 316 L SS. Based on these findings, it can be inferred that FSP is a viable method to improve the tribological and corrosion behavior of CS 316 L SS deposits. • Cold sprayed steel was subjected to friction stir processing (FSP) • FSP led to notable grain size refinement and surface densification • A full austenitic phase transformation was observed after FSP • The influence of FSP resulted in a reduced friction wear rate • FSP reduced the propensity of pitting corrosion and passivation current density" @default.
- W4308209436 created "2022-11-09" @default.
- W4308209436 creator A5002786834 @default.
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- W4308209436 creator A5036909736 @default.
- W4308209436 creator A5054868206 @default.
- W4308209436 creator A5065562158 @default.
- W4308209436 date "2023-02-01" @default.
- W4308209436 modified "2023-10-03" @default.
- W4308209436 title "Influence of Friction Stir Processing on the Friction, Wear and Corrosion Mechanisms of Solid-State Additively Manufactured 316L Duplex Stainless Steel" @default.
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