Experimental studies and the model of anisotropic plasticity for additively manufactured stainless steel with stress state dependent properties
Author:
Funder
Russian Science Foundation
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s00161-024-01286-4.pdf
Reference60 articles.
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2. Zhang, X., McMurtrey, M.D., Wang, L., O’Brien, R.C., Shiau, C.H., Wang, Y., et al.: Evolution of microstructure, residual stress, and tensile properties of additively manufactured stainless steel under heat treatments. JOM 72, 4167–4177 (2020). https://doi.org/10.1007/s11837-020-04433-9
3. Williams, R.J., Vecchiato, F., Kelleher, J., Wenman, M.R., Hooper, P.A., Davies, C.M.: Effects of heat treatment on residual stresses in the laser powder bed fusion of 316L stainless steel: finite element predictions and neutron diffraction measurements. J. Manuf. Process. 57, 641–653 (2020). https://doi.org/10.1016/j.jmapro.2020.07.023
4. Wang, Y.M., Voisin, T., McKeown, J.T., Ye, J., Calta, N.P., Li, Z., et al.: Additively manufactured hierarchical stainless steels with high strength and ductility. Nat. Mater. 17, 63–70 (2018). https://doi.org/10.1038/NMAT5021
5. Ronneberg, T., Davies, C.M., Hooper, P.A.: Revealing relationships between porosity, microstructure and mechanical properties of laser powder bed fusion 316L stainless steel through heat treatment. Mater. Des. 189, 108481 (2020). https://doi.org/10.1016/j.matdes.2020.108481
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