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- W4384201439 abstract "AISI 5120 steel, which underwent 30 min single-surface nanocrystallization via supersonic fine particle bombarding (SFPB), was pre-boronized at 600 °C for 2 h, and then final-boronized at 800 °C or 900 °C for 2–6 h, i.e., two-step pack-boronizing. The specimens’ microstructure and mechanical characteristics before and after two-step boronizing were examined in detail. The results showed that the hardness of the SFPB surface reached 570 HV, which was 2.73 times higher than its original hardness (209 HV). The nanocrystallized surface exhibited the increased thickness and hardness of the boride layer, in comparison to that of the un-SFPB surface. Two-step pack-boronizing further improved the thickness and hardness of the SFPB surface of AISI 5120 steel. When final-boronizing at 900 °C for 6 h, the thickness and hardness of the boronizing layer in the SFPB surface was 88 µm and 2196 HV, respectively, which was 10.5 times higher than the original hardness. Additionally, the CeO2 added in the boronizing agent was helpful in obtaining the boride layer with the ductile-serrated Fe2B phase rather than the brittle phase of FeB in the boride layer, which was expected for industrial applications." @default.
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- W4384201439 date "2023-07-13" @default.
- W4384201439 modified "2023-09-28" @default.
- W4384201439 title "Influence of Surface Nanocrystallization on Two-Step Pack-Boronizing of AISI 5120 Steel" @default.
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- W4384201439 doi "https://doi.org/10.3390/coatings13071242" @default.
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