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- W3148862541 abstract "High-temperature alloys based on the Nb–Si system have been considered as potential alternative materials for Ni–based superalloys. The focus of present research is to investigate the effect of Ti and Zr alloying elements and its combined addition on the microstructure, mechanical properties (compression, fracture toughness, hardness and modulus) and fracture behavior of the Nb–Si alloys. The microstructure of Nb–18.7Si and Nb–18.7Si–5Ti alloys composed of Nb ss and Nb 3 Si phases. On the other hand, interestingly the Nb-18.7Si-5Zr and Nb–18.7Si-5Ti-5Zr systems exhibited distinctive microstructure and consisted of Nb ss and α–Nb 5 Si 3 phases. The present work reveals that the combined addition of Ti and Zr to Nb–Si (Nb–18.7Si–5Ti–5Zr) system resulted exceptionally high copressive strength (2236 ± 81 MPa), improved strain (10.16 ± 0.59%) and fracture toughness (10.59 ± 0.35 MPa.m 1/2 ). The formation of high strength α-Nb 5 Si 3 phase was attributed to such high strength value. Whereas, the increase in the phase fraction and coarsening of Nb ss phase along with the presence of lamellar Nb ss phase morphology are the contributing factors for its enhanced fracture toughness. The achievement of good combination of properties with stable microstructure without subjecting the Nb–18.7Si–5Ti–5Zr material to any additional heat treatment process is the promising outcome of this research. Fracture in the alloys started with cracking of the silicide phase (Nb 3 Si/α–Nb 5 Si 3 ) and the crack path tortuosity increased by the crack bridging, branching and deflection mechanisms at the Nb ss phase. Further, the constraint of the brittle silicide phase on the ductile Nb ss phase impeded the ductility or deformation of the Nb ss phase which resulted in interface debonding in the alloys. • The microstructure of cast Nb–18.7Si and Nb–18.7Si–5Ti alloys composed of Nb ss and Nb 3 Si phases. • The Nb–18.7Si–5Zr and Nb–18.7Si–5Ti–5Zr alloys exhibited distinctive microstructure consisting of Nb ss and α–Nb 5 Si 3 phases. • Nb–18.7Si–5Ti–5Zr measured with better combination of compressive strength (2236 ± 81 MPa), strain (10.16 ± 0.59%) and fracture toughness (10.59 ± 0.35 MPa.m 1/2 ). • The increase in the phase fraction, coarsening of Nb ss and duplex microstructure are the contributing factors for enhanced fracture toughness of Nb–18.7Si–5Ti–5Zr. • The crack bridging, crack branching and deflection are the major toughening mechanisms for these alloys." @default.
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- W3148862541 date "2021-08-01" @default.
- W3148862541 modified "2023-10-18" @default.
- W3148862541 title "Structure-property correlation and deformation mechanisms in ductile phase (Nbss) toughened cast Nb–Si alloys" @default.
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- W3148862541 doi "https://doi.org/10.1016/j.jallcom.2021.159832" @default.
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