Advanced gas atomization processing for Ti and Ti alloy powder manufacturing

A multi-layer ceramic composite melt pour tube for superheating and pouring of molten Ti-6Al-4V (wt.%) was tested using an existing Ti atomization system. Free fall gas atomization was conducted with the pour tube while liquid metal temperatures were measured in situ using a two-color optical pyrome...

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Veröffentlicht in:JOM (1989) 2010-05, Vol.62 (5), p.35-41
Hauptverfasser: Heidloff, A. J., Rieken, J. R., Anderson, I. E., Byrd, D., Sears, J., Glynn, M., Ward, R. M.
Format: Artikel
Sprache:eng
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Zusammenfassung:A multi-layer ceramic composite melt pour tube for superheating and pouring of molten Ti-6Al-4V (wt.%) was tested using an existing Ti atomization system. Free fall gas atomization was conducted with the pour tube while liquid metal temperatures were measured in situ using a two-color optical pyrometer. Post-process pour tube erosion was compared with pre-process matching surfaces, and minimal change in interior liner thickness was found. Microstructural analysis, phase identification, and composition determination of the resulting gas-atomized powder indicated minimal contamination from the composite pour tube despite very high liquid superheat, approaching 300° C. Hot isostatic pressing of the powder resulted in mechanical properties exceeding the MIL-T-9047 standard for Ti-6Al-4V.
ISSN:1047-4838
1543-1851
DOI:10.1007/s11837-010-0075-x