研究目的
To develop austenitic stainless steel powders with increased nitrogen content for laser additive manufacturing by substituting nickel with nitrogen to improve mechanical properties and corrosion resistance.
研究成果
The study successfully developed modified 316L steel alloy powders with increased nitrogen content (0.2–0.3 mass %) by reducing nickel and increasing manganese. The powders exhibited spherical shape, good flowability, and packing density, making them suitable for laser powder bed fusion. The rapid solidification during atomization retained nitrogen homogeneously distributed in the particles.
研究不足
The study is limited to the development and characterization of austenitic stainless steel powders with increased nitrogen content. The practical application in laser additive manufacturing and the performance of the final products are not extensively covered.
1:Experimental Design and Method Selection:
The study involved melting steel under a nitrogen atmosphere and adding manganese to increase nitrogen solubility. The steel melt was then atomized using gas atomization with nitrogen or argon.
2:Sample Selection and Data Sources:
Modified 316L stainless steels with reduced nickel and increased manganese content were used. The nitrogen content was measured using carrier hot gas extraction.
3:List of Experimental Equipment and Materials:
Equipment included a self-constructed powder plant (PA7), a close-coupled atomizer (GD26), SEM (CAMSCAN CS44), optical microscopy (Axiophot), and a laser diffraction testing instrument (Malvern Mastersizer 2000).
4:0).
Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: The steel was melted under nitrogen or argon atmosphere, atomized, and the resulting powders were characterized for nitrogen content, particle size distribution, shape, and microstructure.
5:Data Analysis Methods:
Nitrogen content was measured using carrier hot gas extraction. Particle size distribution was determined by laser diffraction, and particle shape was analyzed using image analysis.
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