4.6 Article

Evaluation of Grain Boundary Network and Improvement of Intergranular Cracking Resistance in 316L Stainless Steel after Grain Boundary Engineering

期刊

MATERIALS
卷 12, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/ma12020242

关键词

austenitic stainless steel; EBSD; grain boundary engineering; grain boundary connectivity; stress corrosion cracking

资金

  1. Natural Science Foundation of Beijing Municipality [2182044]
  2. National Natural Science Foundation of China [51701017, 51671122]
  3. Fundamental Research Funds for the Central Universities [FRF-TP-16-041A1]

向作者/读者索取更多资源

For understanding the improvement of intergranular stress corrosion cracking (IGSCC) propagation in grain boundary engineering (GBE)-processed metals exposed to a simulated pressurized water reactor (PWR) environment, characteristics of the grain boundary network of 316L stainless steel before and after GBE were investigated and compared, including proportions both in length and in number of Sigma 3(n) boundaries, sizes, and topology of grain clusters (or twin-related domains), and connectivity of random boundaries. The term through-view random boundary path (TRBP) was proposed to evaluate the random boundary connectivity. A TRBP is a chain of end-to-end connected crack-susceptible boundaries that passes through the entire mapped microstructure. The work provides the following key findings: (I) the length fraction of Sigma 3(n) boundaries was increased to approximately 75% after GBE, but the number fraction was only approximately 50%; (II) a connected non-twin boundary network still existed in the GBE sample due to the formation of grain clusters; (III) the GBE sample exhibited a higher resistance to IGSCC; and (IV) as the twin boundary fraction increased, the number of TRBPs decreased and the normalized length of the minimum TRBP increased monotonically, leading to a higher resistance to IGSCC.

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