September 2026

Journal

Insights into elevated temperature tensile deformation mechanisms and kink banding in additively manufactured tungsten

By:
Mayes, Riley E; Estrada, Katie A; Luna Falcon, Pablo A; Holtham, Noah W; Thapliyal, Saket ; Fernandez-Zelaia, Patxi ; Ledford, John C; Kato, Yutai ; Kirka, Michael M
Journal Name:
Journal of Materials Research and Technology
Page Number:
3913-3921
Volume:
44
Publication Date:
September 4, 2026
View DOI Listing:
https://doi.org/10.1016/j.jmrt.2026.08.119

Abstract

Additive manufacturing (AM) potentially enables fabrication and repair of plasma facing components (PFCs) of tungsten. However, deformation mechanisms in AM-fabricated tungsten under service-relevant thermomechanical conditions remain unknown majorly due to challenges in achieving crack-free W. This study reveals the deformation mechanisms operative under tension at 800 °C and 1200 °C in the electron beam melting powder bed fusion (EBM-PBF) fabricated W. Textured columnar grains with mixed /|| build-direction were observed. Strong anisotropy in tensile properties persisted across test temperatures, and all specimens exhibited extensive deformation-induced banding phenomena. Grain boundary character analysis of the deformed specimens indicated that these deformation bands were kink bands with tilt grain boundaries prominently present at the band-matrix interface. Interestingly, the material within the kink bands rotated toward higher resolved shear stress, providing insights into the origins of kink band formation in body-centered cubic refractory metals. Intragranular misorientation axis analysis revealed that plasticity was dominated by {110} slip at 800 °C, whereas additional (213)[11⁢̄1] and (112)[11⁢̄1] slip systems activated at 1200 °C. A dense low-angle boundary networks observed near fractured surface indicated the onset of dynamic recrystallization. Results reveal plasticity governing mechanisms in AM-fabricated W under power plant-relevant conditions, and provide insights into kink band attributes in refractory metals.