arXiv Open Access 2021

Discovering the nanoscale origins of localized corrosion in additive manufactured stainless steel 316L by in situ liquid cell TEM

Mengkun Tian Jahnavi Desai Choundraj Thomas Voisin Y. Morris Wang Josh Kacher
Lihat Sumber

Abstrak

Additive manufacturing (AM) by laser powder bed fusion (L-PBF) leads to the formation of a rich, hierarchical microstructure, including dislocation cell structures and elemental segregation. This structure has profound impacts on the corrosion behavior and mechanical properties of printed materials. In this study, we use in situ liquid cell scanning transmission electron microscope (STEM) to directly characterize the nanoscale origins of corrosion initiation in AM 316L stainless steel. Under applied anodic potentials, we found that the dislocation cellular boundaries were preferentially corroded and that pit-like features formed along the cellular boundaries. We directly observed the earliest stages of corrosion by controlling the biasing parameters to decelerate the corrosion processes. The results show that highly localized corrosion occurs via inclusion dissolution along dislocation cell boundaries. More widespread corrosion initiates at the dislocation cell boundaries and spreads throughout the dislocation networks.

Topik & Kata Kunci

Penulis (5)

M

Mengkun Tian

J

Jahnavi Desai Choundraj

T

Thomas Voisin

Y

Y. Morris Wang

J

Josh Kacher

Format Sitasi

Tian, M., Choundraj, J.D., Voisin, T., Wang, Y.M., Kacher, J. (2021). Discovering the nanoscale origins of localized corrosion in additive manufactured stainless steel 316L by in situ liquid cell TEM. https://arxiv.org/abs/2112.08263

Akses Cepat

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Informasi Jurnal
Tahun Terbit
2021
Bahasa
en
Sumber Database
arXiv
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Open Access ✓