Direct selective laser sintering of high-entropy carbide ceramics
Прямая селективная лазерная спекание высокоэнтропийных карбидных керамик
2022-10-25
SCID: 54.1/45e76dj4
Discuss with AI
Vickers hardnessYb fiber laserhigh-entropy carbide ceramicsreactive sinteringselective laser sintering
Figures from the paper
Abstract (AI)
Abstract The direct selective laser sintering (SLS) process was successfully demonstrated for additive manufacturing of high-entropy carbide ceramics (HECC), in which a Yb fiber laser was employed for ultrafast (in seconds) reactive sintering of HECC specimens from a powder mixture of constitute monocarbides. A single-phase non-equiatomic HECC was successfully formed in the 4-HECC specimen with a uniform distribution of Zr, Nb, Hf, Ta, and C. In contrast, a three-layer microstructure was formed in the 5-HECC specimen with five metal elements (Zr, Nb, Hf, Ta and Ti), consisting of a TiC-rich top layer, a Zr–Hf–C enriched intermediate layer, and a non-equiatomic Zr–Ta–Nb–Hf–C HECC layer. Vickers hardness of 4- and 5-HECC specimens were 22.2 and 21.8 GPa, respectively, on the surface. These findings have important implications on the fundamental mechanisms governing interactions between laser and monocarbide powders to form a solid solution of HECCs during SLS. Graphical abstract
Key Findings
1
A single-phase non-equiatomic HECC with uniform distribution of Zr, Nb, Hf, Ta, and C was formed in the 4-HECC specimen.
2
Direct selective laser sintering (SLS) using a Yb fiber laser enables ultrafast (seconds) reactive sintering of high-entropy carbide ceramics (HECC) from monocarbide powder mixtures.
3
Results indicate laser–monocarbide powder interactions during SLS critically determine phase formation and layering in HECC solid solutions.
4
Surface Vickers hardness values of the SLS-produced HECCs were high: 22.2 GPa for 4-HECC and 21.8 GPa for 5-HECC.
5
The 5-HECC specimen (Zr, Nb, Hf, Ta, Ti) developed a three-layer microstructure: a TiC-rich top layer, a Zr–Hf–C enriched intermediate layer, and a non-equiatomic Zr–Ta–Nb–Hf–C HECC layer.
Research Object
High-entropy carbide ceramics (HECC) produced by direct selective laser sintering from monocarbide powder mixtures
Research Subject
Formation, microstructural evolution (single-phase vs. layered structures), elemental distribution, and surface Vickers hardness of HECCs resulting from ultrafast reactive selective laser sintering
Publication Details
Publication Date
2022-10-25
Journal
Publisher
ISSN
Cited by
17
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest