Authors: | Stern, Felix Becker, Louis Cui, Chengsong Tenkamp, Jochen Uhlenwinkel, Volker Steinbacher, Matthias Boes, Johannes Lentz, Jonathan Fechte-Heinen, Rainer Weber, Sebastian Walther, Frank |
Title: | Improving the defect tolerance of PBF-LB/M processed 316L steel by increasing the nitrogen content |
Language (ISO): | en |
Abstract: | Nitrogen (N) in steels can improve their mechanical strength by solid solution strengthening. Processing N-alloyed steels with additive manufacturing, here laser powder bed fusion (PBF-LB), is challenging as the N-solubility in the melt can be exceeded. This degassing of N counteracts its intended positive effects. Herein, the PBF-LB processed 316L stainless steel with increased N-content is investigated and compared to PBF-LB 316L with conventional N-content. The N is introduced into the steel by nitriding the powder and mixing it with the starting powder to achieve an N-content of approximately 0.16 mass%. Thermodynamic calculations for maximum solubility to avoid N outgassing and pore formation under PBF-LB conditions are performed beforehand. Based on the results, a higher defect tolerance under fatigue characterized by Murakami model can be achieved without negatively influencing the PBF-LB processability of the 316L steel. The increased N-content leads to higher hardness (+14%), yield strength (+16%), tensile strength (+9%), and higher failure stress in short time fatigue test (+16%). |
Subject Headings: | AISI 316L Defect tolerance Fatigue behavior Laser powder bed fusion Nitrogen alloying |
Subject Headings (RSWK): | Selektives Laserschmelzen Austenitischer Stahl Stickstoff Legieren Materialermüdung |
URI: | http://hdl.handle.net/2003/42304 http://dx.doi.org/10.17877/DE290R-24141 |
Issue Date: | 2022-08-02 |
Rights link: | https://creativecommons.org/licenses/by/4.0/ |
Appears in Collections: | Fachgebiet Werkstoffprüftechnik |
Files in This Item:
File | Description | Size | Format | |
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Adv Eng Mater - 2022 - Stern - Improving the Defect Tolerance of PBF‐LB M Processed 316L Steel by Increasing the Nitrogen.pdf | DNB | 3.82 MB | Adobe PDF | View/Open |
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