A contribution to the Al–Pd–Cr phase diagram
The Al–Pd–Cr alloy system was investigated in the compositional range above 50 at.% Al. The binary Al–Cr phases θ, η, μ, ν and γ 2 extend up to about 1, 2, 1, 1 and 3 at.% Pd, respectively. The binary Al–Pd ɛ, δ and β-phases dissolve up to 3, 4 and at least 10 at.% Cr, respectively. Five ternary str...
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Veröffentlicht in: | Journal of alloys and compounds 2010-04, Vol.496 (1), p.129-134 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The Al–Pd–Cr alloy system was investigated in the compositional range above 50
at.% Al. The binary Al–Cr phases θ, η, μ, ν and γ
2 extend up to about 1, 2, 1, 1 and 3
at.% Pd, respectively. The binary Al–Pd ɛ, δ and β-phases dissolve up to 3, 4 and at least 10
at.% Cr, respectively. Five ternary structures were revealed in a quite small compositional range adjusting to that of the Al–Cr μ-phase. One, resembling the high-temperature Al
3Mn phase (T-phase, orth.
a
=
1.47,
b
=
1.24 and
c
=
1.25
nm), is formed in a small region around Al
77Pd
7Cr
16 composition. A hexagonal structure with
a
=
1.77 and
c
=
1.25
nm resembling Al–Ni(Cu)–Cr ζ-phase was revealed around Al
81.5Pd
1.5Cr
17 and another hexagonal structure with very close lattice parameters around Al
73Pd
11Cr
16. A ternary
-phase resembling that in Al–Ni–Cr (orth.,
a
=
1.24,
b
=
3.46 and
c
=
2.04
nm) was found at 970
°C around the Al
77.5Pd
1.5Cr
21 composition. An additional orthorhombic phase with
a
=
2.48,
b
=
3.87 and
c
=
2.04
nm was found to be formed between about Al
80Pd
4Cr
16, Al
73Pd
8Cr
19, Al
77Pd
4Cr
19 and Al
77Pd
6Cr
17. Partial 930, 970, 990 and 1020
°C isothermal sections are presented. |
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ISSN: | 0925-8388 1873-4669 |
DOI: | 10.1016/j.jallcom.2010.02.033 |