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Pisma v Zhurnal Tekhnicheskoi Fiziki, 2019 Volume 45, Issue 17, Pages 31–34 (Mi pjtf5334)

This article is cited in 3 papers

The effect of hydrogen on fluctuation embrittlement of aluminum

D. A. Indeitsev, E. V. Osipova

Institute of Problems of Mechanical Engineering, Russian Academy of Sciences, St. Petersburg

Abstract: In this paper, we describe the main processes occurring during the generation of vacancies in aluminum in the presence of hydrogen by ab initio methods using the SCAN functional. Hydrogen is shown to reduce the generation energy of vacancies from 2.8 to 0.8 eV. In this case, the eight hydrogen atoms located in the tetrahedral lattice voids around single aluminum atom greatly facilitate its movement to the interstitial site. The dependence of the activation energy of hydrogen embrittlement of aluminum on the hydrogen concentration in aluminum and temperature is calculated based on the kinetic strength concept. Hydrogen is shown to reduce the time of aluminum destruction only if its mole fraction in aluminum is greater than the critical level ($\sim$3 $\times$ 10$^{-4}$ at $T$ = 293 K).

Keywords: hydrogen embrittlement, activation energy of destruction, vacancies, density functional method.

Received: 29.05.2019
Revised: 29.05.2019
Accepted: 30.05.2019

DOI: 10.21883/PJTF.2019.17.48221.17896


 English version:
Technical Physics Letters, 2019, 45:9, 882–885

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© Steklov Math. Inst. of RAS, 2024