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The Effects of Modifying the Activity of Nitriding Media by Diluting Ammonia with Nitrogen. | LitMetric

The Effects of Modifying the Activity of Nitriding Media by Diluting Ammonia with Nitrogen.

Materials (Basel)

Section IX-Materials Science and Engineering, Technical Sciences Academy of Romania, 030167 Bucharest, Romania.

Published: May 2021

AI Article Synopsis

  • - The paper examines how diluting ammonia with nitrogen affects the growth and composition of nitrided layers on two types of steel—Fe-ARMCO and 34CrAlMo5 nitralloy steel.
  • - It employs experimental programming and mathematical modeling to analyze the impact of key parameters like nitriding temperature and ammonia dissociation on layer growth kinetics.
  • - The study finds that both the dilution of ammonia and the degree of ammonia dissociation play crucial roles in determining the nitrogen potential of the gaseous mixture used in nitriding, which subsequently affects nitrogen concentration at the metal surface.

Article Abstract

This paper discusses the issue of the effects of modifying the activity of nitriding media by diluting ammonia with nitrogen and the concomitant variation in the degree of ammonia dissociation on the layer's growth kinetics and their phase composition. To understand and quantify the effects of the variation in the main parameters that influence the layer growth kinetics, the experimental programming method was used and mathematical models of interactions between influence and kinetics parameters were obtained for two metallic materials: Fe-ARMCO and 34CrAlMo5 nitralloy steel. It was concluded that the nitriding operating temperature and the degree of nitrogen dilution of the ammonia have statistically significant influences on the kinetics of the nitrided layer. In the same context, it was analytically proved and experimentally confirmed that the ammonia degree dissociation from the gaseous ammonia-nitrogen mixture, along with the dilution degree of the medium with nitrogen, significantly influences the nitrogen potential of the gaseous mixture used for nitriding and thus the concentration of nitrogen in balance at the medium thermochemically processed metal product interface.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8124868PMC
http://dx.doi.org/10.3390/ma14092432DOI Listing

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