The Ho–Al–Cu isothermal section at 500 8C has been investigated in the whole composition range by means of X-ray diffraction, optical and scanning electron microscopy and electron probe microanalysis. The following ternary phases have been identified or confirmed: t1wHo3(CuxAl1Kx)11 (0.12%x%0.185, oI28–La3Al11), t2-Ho(CuxAl1Kx)3 (0.215%x%0.41, hR36–PuNi3), t3-Ho(CuxAl1Kx)2 (0.43%x%0.615, hP9–Fe2P), t4-Ho(CuxAl1Kx)12 (0.36%x%0.55, tI26 ThMn12-type), t5-Ho2(CuxAl1Kx)17 (0.42%x%0.69, hR57 Th2Zn17-type), t6-Ho(CuxAl1Kx)5 (0.45%x%0.815, hP6 CaCu5-type), t7-Ho6Cu15.4Al7.6 (cF116–Th6Mn23), t8-Ho(CuxAl1Kx)6 (0.805%x%0.83, tI14–YbMo2Al4). The phase equilibria resulting from the large number of binary and ternary compounds were determined. The general characteristics of the section have been discussed in comparison with those of other R–Al–Cu systems.

The isothermal section at 500°C of the Al-Cu-Ho ternary system

RIANI, PAOLA;MARAZZA, RINALDO;MAZZONE, DONATA MARIA;ZANICCHI, GILDA;
2005-01-01

Abstract

The Ho–Al–Cu isothermal section at 500 8C has been investigated in the whole composition range by means of X-ray diffraction, optical and scanning electron microscopy and electron probe microanalysis. The following ternary phases have been identified or confirmed: t1wHo3(CuxAl1Kx)11 (0.12%x%0.185, oI28–La3Al11), t2-Ho(CuxAl1Kx)3 (0.215%x%0.41, hR36–PuNi3), t3-Ho(CuxAl1Kx)2 (0.43%x%0.615, hP9–Fe2P), t4-Ho(CuxAl1Kx)12 (0.36%x%0.55, tI26 ThMn12-type), t5-Ho2(CuxAl1Kx)17 (0.42%x%0.69, hR57 Th2Zn17-type), t6-Ho(CuxAl1Kx)5 (0.45%x%0.815, hP6 CaCu5-type), t7-Ho6Cu15.4Al7.6 (cF116–Th6Mn23), t8-Ho(CuxAl1Kx)6 (0.805%x%0.83, tI14–YbMo2Al4). The phase equilibria resulting from the large number of binary and ternary compounds were determined. The general characteristics of the section have been discussed in comparison with those of other R–Al–Cu systems.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11567/246369
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