2022
DOI: 10.1007/s11663-022-02443-3
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Reaction Mechanism and Control Strategy of Aluminum Increase in High Nitrogen Stainless Bearing Steel During Pressurized Electroslag Remelting

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Cited by 5 publications
(2 citation statements)
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“…Both N-free and high-nitrogen (0.18 wt%) M42 HSS were fabricated by a duplex melting route of pressurized induction melting and pressurized electroslag remelting. [29,30] The chemical compositions of the two steels are listed in Table 1. The induction melting and electroslag remelting processes were performed under high argon pressure for N-free steel and high-nitrogen pressure for 0.18N steel.…”
Section: Materials Preparationmentioning
confidence: 99%
“…Both N-free and high-nitrogen (0.18 wt%) M42 HSS were fabricated by a duplex melting route of pressurized induction melting and pressurized electroslag remelting. [29,30] The chemical compositions of the two steels are listed in Table 1. The induction melting and electroslag remelting processes were performed under high argon pressure for N-free steel and high-nitrogen pressure for 0.18N steel.…”
Section: Materials Preparationmentioning
confidence: 99%
“…The development of pressurized metallurgy, such as pressurized induction melting (PIM) and pressurized electroslag remelting (PESR), has enabled the production of high-nitrogen HSS without nitrogen pores. [23][24][25][26][27] In this study, a novel high-nitrogen (0.18 wt%) M42 HSS was successfully fabricated by PIM þ PESR. The microstructural characteristics and mechanical properties of N-free and high-nitrogen M42 HSS were investigated after tempering at various temperatures (450-600 °C).…”
mentioning
confidence: 99%