Influence of sintering temperature on Ti6Al4V-Si 3 N 4 -ZrO 2 ternary composites prepared by spark plasma sintering
In this study, Ti6Al4V-ZrO 2 -Si 3 N 4 ternary composites were fabricated using a novel spark plasma sintering technique at different temperatures between 950-1200 °C, the pressure of 50 MPa, sintering rate of 100 °C/min, and a holding time of 10 min to determine the effect of sintering temperature...
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Veröffentlicht in: | Manufacturing review (Ulis, France) France), 2024, Vol.11, p.5 |
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Hauptverfasser: | , , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
Online-Zugang: | Volltext |
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Zusammenfassung: | In this study, Ti6Al4V-ZrO
2
-Si
3
N
4
ternary composites were fabricated using a novel spark plasma sintering technique at different temperatures between 950-1200 °C, the pressure of 50 MPa, sintering rate of 100 °C/min, and a holding time of 10 min to determine the effect of sintering temperature on the consolidated composites. The microstructures of the fabricated composites were examined by the scanning electron microscope (SEM-EDX). The distinct phases and the nano-mechanical properties of the composite were determined by the X-ray diffractometer and nanoindenter. The results show a non-linear response. At elevated temperatures from the composite sample, C
T
1-950 °C to the composite sample, C
T
2-1100 °C, the densification, and nanomechanical properties experienced an increase, and when the temperature is elevated to 1200 °C, composite C
T
3 declines in values. However, the relative density of all fabricated composites was above 95%, which suggests an overall good densification via the spark plasma sintering technique. The ternary composite fabricated at 1100 °C, (C
T
2) attained maximum values of Vickers hardness, elastic modulus, and nano hardness at 7380 MPa, 177.91 GPa, and 60.06 GPa, respectively, while composite C
T
3 declines at 1200 °C. |
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ISSN: | 2265-4224 2265-4224 |
DOI: | 10.1051/mfreview/2024004 |