Implication of nano-scale grain refinement by severe shot peening on corrosion resistance of additively manufactured 316 L stainless steel

Microstructural analysis and electrochemical measurements were performed in a SLM 316 L steel that was submitted to SSP. In comparison to the wrought steel, the greatly smaller grain size and higher dislocation density promote nucleation sites for oxidation, and a thicker passive layer, with more stable Cr2O3 oxides, is formed on the SLM steel. SSP produces a thick-gradient surface layer with a nanostructured surface. Overall corrosion resistance decreased in comparison to the un-peened SLM. SSP induces decohesion along the MPBs, leading to pitting. High-residual stresses, twins and dislocation break the cellular-walls, promoting the imperfect cell-structure and jeopardizing the passive film stability.

 

Acknowledgments: The authors would like to thank the Spanish Government for the financial support received to perform Project TED2021-130306B-100 (Safe-Wind). The authors are also grateful for the funding received from the MICINN PID2021-124768OB-C21 and TED2021–130413B-I00 projects, co-financed with Next Generation EU funds.

Authors:

P. Ebrahimzadeh (Universidad de Oviedo), L.B. Peral (Universidad de Oviedo), Rodolfo González-Martínez (AZTERLAN), Enara Mardaras (AZTERLAN)

Keywords:

Selective Laser Melting,  Shot Peening, Grain refinement, EBSD, Corrosion

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