4.3 Article

Cascades in model steels: The effect of cementite (Fe3C) and Cr23C6 particles on short-term crystal damage

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.nimb.2014.11.112

关键词

Cementite; Iron; Steel; Molecular dynamics calculations; Point defects

资金

  1. Academy of Finland

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Ferritic stainless steel can be modeled as an iron matrix containing precipitates of cementite (Fe3C) and Cr23C6. When used in nuclear power production the steels in the vicinity of the core start to accumulate damage due to neutrons. The role of the afore-mentioned carbides in this process is not well understood. In order to clarify the situation bulk cascades created by primary recoils in model steels have been carried out in the present work. Investigated configurations consisted of bulk ferrite containing spherical particles (diameter of 4 nm) of either (1) Fe3C or (2) Cr23C6. Primary recoils were initiated at different distances from the inclusions, with recoil energies varying between 100 eV and 1 keV. Results for the number of point defects such as vacancies and antisites are presented. These findings indicate that defects are also remaining when cascades are started outside the carbide inclusions. The work uses a recently developed Abell-Brenner-Tersoff potential for the Fe-Cr-C system. (C) 2014 Elsevier B.V. All rights reserved.

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