2009Journal of University of Science and Technology BeijingRequires access

Study on the nitrogen alloying process of nitrogen-contained 316 L stainless steel

Heng Cui

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Abstract

The influences of liquid steel temperature and nitrogen partial pressure on the nitrogen solubility in 316 L stainless steel under normal atmosphere and vacuum were studied. The nitrogen solubility increased with decreasing the liquid steel temperature or increasing the nitrogen partial pressure. A thermodynamic model was developed to calculate the nitrogen solubility in 316 L stainless steel,and the calculated results were in coincidence with the measurement results under different nitrogen blowing processes. At 1 773 to 1 873 K,the nitrogen partial pressure must be over 6-28 kPa to produce 316LN (N: 0.05%-0.10%,mass fraction,so as the follows),and must be over 22-101 kPa to produce 316 LN (N: 0.10%-0.40%). The nitrogen content was over 0.01% in the condition of nitrogen blowing for 10 min under normal atmosphere.

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The influences of liquid steel temperature and nitrogen partial pressure on the nitrogen solubility in 316 L stainless steel under normal atmosphere and vacuum were studied. The nitrogen solubility increased with decreasing the liquid steel temperature or increasing the nitrogen partial pressure. A thermodynamic model was developed to calculate the nitrogen solubility in 316 L stainless steel,and the calculated results were in coincidence with the measurement results under different nitrogen blowing processes. At 1 773 to 1 873 K,the nitrogen partial pressure must be over 6-28 kPa to produce 316LN (N: 0.05%-0.10%,mass fraction,so as the follows),and must be over 22-101 kPa to produce 316 LN (N: 0.10%-0.40%). The nitrogen content was over 0.01% in the condition of nitrogen blowing for 10 min under normal atmosphere.

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Available abstract

The influences of liquid steel temperature and nitrogen partial pressure on the nitrogen solubility in 316 L stainless steel under normal atmosphere and vacuum were studied. The nitrogen solubility increased with decreasing the liquid steel temperature or increasing the nitrogen partial pressure. A thermodynamic model was developed to calculate the nitrogen solubility in 316 L stainless steel,and the calculated results were in coincidence with the measurement results under different nitrogen blowing processes. At 1 773 to 1 873 K,the nitrogen partial pressure must be over 6-28 kPa to produce 316LN (N: 0.05%-0.10%,mass fraction,so as the follows),and must be over 22-101 kPa to produce 316 LN (N: 0.10%-0.40%). The nitrogen content was over 0.01% in the condition of nitrogen blowing for 10 min under normal atmosphere.

Key concepts: Nitrogen, Solubility, Partial pressure, Mass fraction, Metallurgy, Materials science, Atmosphere (unit), Liquid nitrogen

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