Abstract
Additive manufacturing using tungsten, a brittle material, is difficult because of its high melting point, thermal conductivity, and oxidation tendency. In this study, pure tungsten parts with densities of up to 18.53 g/cm3 (i.e., 96.0% of the theoretical density) were fabricated by selective laser melting. In order to minimize balling effects, the raw polyhedral tungsten powders underwent a spheroidization process before laser consolidation. Compared with polyhedral powders, the spherical powders showed increased laser absorptivity and packing density, which helped in the formation of a continuous molten track and promoted densification.
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Wang, D., Yu, C., Zhou, X., Ma, J., Liu, W., & Shen, Z. (2017). Dense pure tungsten fabricated by selective laser melting. Applied Sciences (Switzerland), 7(4). https://doi.org/10.3390/app7040430
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