Print Email Facebook Twitter Cracks formation in nickel-based single crystal alloy manufactured by selective laser melting Title Cracks formation in nickel-based single crystal alloy manufactured by selective laser melting Author Borisov, Evgenii (St. Petersburg Polytechnic University) Starikov, Kirill (St. Petersburg Polytechnic University) Popovich, Anatoly (St. Petersburg Polytechnic University) Popovich, V. (TU Delft (OLD) MSE-5; St. Petersburg Academic University) Date 2020 Abstract The aim of this study was to determine the influence of selective laser melting (SLM) process parameters on the formation of cracks in nickel-based single crystal alloy. Several sets of laser scanning parameters, with varied laser power, scanning speed and hatch distance, thus resulting in different volumetric and linear energy densities, were investigated. The relationship between energy density, specimen densification, cracks formation and evolution of directional microstructure was shown. It was found that higher linear energy density results in fewer cracking and defects. Cracking in lower energy samples was attributed to the formation of thermal shrinkage pores in the interdendritic spaces and precipitation of Ta, Mo and Nb carbides along the dendrites boundaries. Subject Additive manufacturingCrack formationNi single crystal alloysSelective laser melting To reference this document use: http://resolver.tudelft.nl/uuid:dc5b5a86-d6de-40fa-a6c9-9d2c85fdfd48 DOI https://doi.org/10.37904/metal.2020.3625 Publisher TANGER Ltd. ISBN 978-80-87294-97-0 Source Proceedings of the 29th International Conference on Metallurgy and Materials, Conference Proceedings (METAL 2020 ) Event 29th International Conference on Metallurgy and Materials, METAL 2020, 2020-05-20 → 2020-05-22, Brno, Czech Republic Part of collection Institutional Repository Document type conference paper Rights © 2020 Evgenii Borisov, Kirill Starikov, Anatoly Popovich, V. Popovich Files PDF metal2020_borisov_metal.pdf 913.59 KB Close viewer /islandora/object/uuid:dc5b5a86-d6de-40fa-a6c9-9d2c85fdfd48/datastream/OBJ/view