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February 22, 2026Materials0 citationsOpen Access

Microstructure and Corrosion Characteristics of IN 625 Coating on Additively Manufactured 316L Stainless Steel in As-Fabricated Condition

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PTPrithwish TarafderLMLingyin MengTOTunji Adetayo Owoseni

Key Points

  • The study aims to evaluate the microstructure and corrosion properties of 316L stainless steel with and without an IN 625 coating.
  • Utilized electron beam powder bed fusion (EB-PBF) for fabrication of 316L stainless steel
  • Applied varying layer thickness and contour scan strategies during manufacturing
  • Conducted potentiodynamic polarization tests for corrosion evaluation
  • Employed advanced microstructural investigation techniques to analyze coatings
  • Corrosion response significantly linked to surface roughness and coating characteristics
  • Without contour scan, coatings improved corrosion potential but increased corrosion rates
  • With contour scan strategy, uncoated samples showed better corrosion resistance than coated samples
  • Dross particles from EB-PBF processing contributed to defects in the coatings, affecting performance.

Abstract

The microstructure and corrosion properties of electron beam powder bed fusion (EB-PBF)-fabricated 316L stainless steel are evaluated in the as-fabricated condition with and without the deposition of IN 625 coating. Different surface profiles were achieved by introducing layer thickness and a contour scan strategy as process variables. A potentiodynamic polarization test was used for corrosion testing, while state-of-the-art microstructural investigation techniques were employed to elucidate a possible link between the microstructure and corrosion properties of the samples. Results from this pilot study showed that the corrosion response was dictated by the combined effects of surface roughness, coating depth, coating morphology, and passive film characteristics. For specimens for which a contour scan strategy was not used, the coating hinted to an improved corrosion potential while it increased the corrosion rate for both layer thicknesses. On the contrary, for specimens where a contour scan was applied, as-fabricated samples trended towards better corrosion resistance than the coated samples. It is shown that the dross particles that are formed during EB-PBF processing influence the flattening mechanism of the coating, ultimately resulting in a coating deposit that is characterized by surface defects, microcracks, cavities, and incoherent splat boundaries.

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Cite This Study

Tarafder et al. (2026) studied this question.

synapsesocial.com/papers/699a9d65482488d673cd32fdhttps://doi.org/10.3390/ma19040812
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