A novel WC–W2C composite synthesis by arc plasma melt cast technique: microstructural and mechanical studies

WC–W 2 C composites of three different compositions have been synthesized from mixture of WC + W (0, 5 and 16 wt% W) by thermal arc plasma melt-cast technique. Various grown phases observed in the composites consisting of major phases of WC and W 2 C and minor phases of unbound C (graphite) and tung...

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Veröffentlicht in:SN applied sciences 2021-03, Vol.3 (3), p.380, Article 380
Hauptverfasser: Nayak, N., Dash, T., Debasish, D., Palei, B. B., Rout, T. K., Bajpai, S., Nayak, B. B.
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Sprache:eng
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Zusammenfassung:WC–W 2 C composites of three different compositions have been synthesized from mixture of WC + W (0, 5 and 16 wt% W) by thermal arc plasma melt-cast technique. Various grown phases observed in the composites consisting of major phases of WC and W 2 C and minor phases of unbound C (graphite) and tungsten (W) were confirmed by X-ray diffraction, selected area electron diffraction, X-ray photoelectron spectroscopy and Fourier transform infrared studies. Transmission electron microscopy and field emission scanning electron microscopy show polycrystalline nature of composites. Energy dispersive spectroscopy (of X-ray) infers the absence of any impurity in the composite. Almost porous free nature of composites were observed from X-ray micro computed tomography and BET analysis studies. WC–W 2 C composite (16 wt% W) shows 25% and 21% higher micro hardness (2535 VHN) and Young’s modulus (625 GPa) values than that of pure melt cast WC sample.
ISSN:2523-3963
2523-3971
DOI:10.1007/s42452-020-04098-8