Corrosion Behavior of SiMo Cast Iron under Controlled Conditions.

Materials (Basel)

Materials Research Laboratory, Faculty of Mechanical Engineering, Silesian University of Technology, 18A Konarskiego Street, 44-100 Gliwice, Poland.

Published: April 2022

AI Article Synopsis

  • The corrosion resistance of cast iron is influenced by exposure conditions, chemical composition, and the distribution of alloying elements.
  • An experiment was conducted on SiMo ductile iron to study the formation of a corrosion layer using a specialized heating chamber and XRD analysis.
  • Molybdenum was found to enhance corrosion resistance by forming a dense oxide coating that slows down corrosion and reduces the thickness of the oxide layer in heating cycles.

Article Abstract

The resistance of cast iron to chemical and electrochemical corrosion depends on the exposure conditions, chemical composition and the distribution of alloying elements in the microstructure. The article presents an attempt to describe the formation of a corrosion layer under controlled chemical corrosion conditions for SiMo ductile iron. In the experiment, a (HT-HRD) chamber for heating the samples with a controlled atmosphere was used, at the same time providing the possibility of testing the sample surface using the XRD method. The analysis was both qualitative and quantitative. It allowed us to capture the sequence of the oxide layer growth on the tested samples. The beneficial effect of molybdenum on the corrosion resistance of SiMo cast iron has been proven. For all cases under analysis, the phenomenon of an increase in the share of hematite (FeO) and magnetite (FeO) was observed in the subsequent sample heating cycles. It turned out that the addition of molybdenum helps to create a tight oxide coating that inhibits the further growth of corrosion processes. Increasing the share of molybdenum in the alloy also reduces the thickness of the oxide layer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101620PMC
http://dx.doi.org/10.3390/ma15093225DOI Listing

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