Growth Kinetics and Microstructure of Iron Boride Layers on AISI 1050 Steel
Diffusion kinetics of boron in AISI 1050 steel is investigated. AISI 1050 steel samples are borided for 2, 4 and 6 h at 850, 900 and 950°C by the powder-pack boriding method using Ekabor-II boriding powder. After the powder-pack boriding, about 25.4 – 118.9 μm thick FeB/Fe 2 B boride layers are obta...
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Veröffentlicht in: | Metal science and heat treatment 2024-03, Vol.65 (11-12), p.751-757 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Diffusion kinetics of boron in AISI 1050 steel is investigated. AISI 1050 steel samples are borided for 2, 4 and 6 h at 850, 900 and 950°C by the powder-pack boriding method using Ekabor-II boriding powder. After the powder-pack boriding, about 25.4 – 118.9 μm thick FeB/Fe
2
B boride layers are obtained on the surfaces of the samples. The boride layers have a typical tooth morphology and their hardness is 1071 – 1460
HV
0.1
. The growth rate constants for the boriding temperatures of 850, 900 and 950°C for the AISI 1050 steel are determined to be 1.522 × 10
–12
, 2.964 × 10
–13
and 6.354 ×10
–12
m
2
· sec
–1
, respectively. The boron diffusion activation energy in the AISI 1050 steel is 162.93 kJ · mol
–1
. |
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ISSN: | 0026-0673 1573-8973 |
DOI: | 10.1007/s11041-024-01001-9 |