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The influence of microstructure on hydrogen diffusion and embrittlement of fine-grained high strength dual-phase steels (CROSBI ID 291967)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Begić Hadžipašić, Anita ; Malina, Jadranka ; Malina, Marijan The influence of microstructure on hydrogen diffusion and embrittlement of fine-grained high strength dual-phase steels // Kovové materiály, 59 (2021), 1; 69-78. doi: 10.4149/km_2021_1_69

Podaci o odgovornosti

Begić Hadžipašić, Anita ; Malina, Jadranka ; Malina, Marijan

engleski

The influence of microstructure on hydrogen diffusion and embrittlement of fine-grained high strength dual-phase steels

The permeation experiments performed in this study have shown that electrochemical corrosion of dual- phase steels in 2 mol L−1 H2SO4 results in hydrogen evolution and absorption of hydrogen atoms in the material, which leads to degradation known as hydrogen embrittlement (HE). The values of the diffusion coefficient and hydrogen solubility obtained in this study have shown that transport of diffusible hydrogen and high susceptibility to HE depends on different microconstituents acting as hydrogen traps in dual-phase steels. The metallographic and SEM/EDS analyses have revealed elongated inclusions in dual-phase steel marked as DP, acting as irreversible traps in the ferrite- martensite matrix. Room temperature tensile tests of hydrogenated specimens have shown degradation of elongation and contraction compared to those of nonhydrogenated ones. SEM analyses of fracture surfaces have revealed the difference between nonhydrogenated dual-phase steels with ductile fracture and hydrogenated dual-phase steels with brittle fracture.

Dual-phase steel ; Hydrogen diffusion ; Hydrogen embrittlement ; Hydrogen traps ; Microstructure ; Mechanical properties

Glavni autori: Anita Begić Hadžipašić i Jadranka Malina

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Podaci o izdanju

59 (1)

2021.

69-78

objavljeno

0023-432X

1338-4252

10.4149/km_2021_1_69

Povezanost rada

Metalurgija

Poveznice
Indeksiranost