Scandium-containing aluminum alloy for powder metallurgical technologies
View Patent ↗A scandium-containing aluminium powder alloy, wires and materials including said alloy, and a method for producing the scandium-containing aluminium powder alloy, the wires and materials, the proportion of scandium in the scandium-containing aluminium powder alloy being elevated, are disclosed. At least one element is selected from the group consisting of the lanthanum group except for Ce, Y, Ga, Nb, Ta, W, V, Ni, Co, Mo, Li, Th, Ag.
1. A method for producing a scandium-containing aluminum powder alloy, the method comprising:
melting, spraying or atomizing and cooling at a cooling rate of more than 10 K/s a mixture comprising, in % by weight, based on a total composition of the mixture,
Mg
0.5-10
Sc
0.1-40
Zr
0.05-1.5
Mn
0.01-1.5
Zn
0-2.0
Ti
0.01-0.2
Ce
≤0.25
Be
0-0.004
B
0-0.008
Si
≤0.25
Fe
≤0.25
Hf
≤0.5
at least one selected from La, Pr, Nd, Pm, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, Lu, Y, Ga, Nb, Ta, W, V, Ni, Co, Mo, Li, Th, or Ag in a proportion of at most 0.5,
and Al as the remainder,
and further comprising impurities in a total of at most 0.5% by weight,
wherein the scandium-containing aluminum powder alloy has a primary phase and a secondary phase, wherein particles in the primary phase have a formula of Al 3 (Sc 1-x Zr x ), x<1, and a grain diameter of no greater than 20 μm.
2. The method of claim 1 , wherein the Sc is included in an amount of 0.6% to 30% by weight, based on the total composition of the mixture.
3. The method of claim 1 , wherein the Zn is included in an amount of 0.2% to 1.0% by weight, based on the total composition of the mixture.
4. The method of claim 1 , wherein particles of the scandium-containing aluminum powder alloy have a grain diameter of from 1 to 250 μm.
5. The method of claim 1 , wherein a proportion of the Zr is at most half of a proportion of the Sc in the total composition of the mixture.
6. The method of claim 1 , wherein a proportion of the sum of the Zr+Ti is less than ⅓ of a proportion of the Sc in the total composition of the mixture.
7. The method of claim 1 , wherein the Hf is included in 0.15% to 0.25% by weight, based on the total composition of the mixture.
8. The method of claim 1 , wherein a high concentration of the Sc is in the secondary phase of the scandium-containing aluminum powder alloy.
9. A method for producing a wire, comprising:
pressing a scandium-containing aluminum powder alloy comprising, in % by weight, based on a total composition of the scandium-containing aluminum powder alloy
Mg
0.5-10
Sc
0.1-30
Zr
0.05-1.5
Mn
0.01-1.5
Zn
0-2.0
Ti
0.01-0.2
Ce
≤0.25
Be
0-0.004
B
0-0.008
Si
≤0.25
Fe
≤0.25
Hf
≤0.5
at least one selected from La, Pr, Nd, Pm, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, Lu, Y, Ga, Nb, Ta, W, V, Ni, Co, Mo, Li, Th, or Ag in a proportion of at most 0.5,
and Al as the remainder,
and further comprising impurities of in total at most 0.5% by weight; and
drawing the pressed scandium-containing aluminum powder alloy into a wire,
wherein the scandium-containing aluminum powder alloy has a primary phase and a secondary phase, wherein particles in the primary phase have a formula of Al 3 (Sc 1-x Zr x ), x<1, and a grain diameter of no greater than 20 μm.