Alloy for aircraft fuselage
An aircraft fuselage and alloy technology, applied in the field of aluminum-based alloys, can solve the problems of the aircraft fuselage skin's poor resistance to magnetic fields and rays, difficult to precisely control operating parameters, and poor aircraft fuselage hardness. Performance and performance, uniform distribution of chemical components, the effect of increasing compression and impact resistance
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Embodiment 1
[0031] A kind of alloy for aircraft fuselage, its raw material composition comprises:
[0032] Sc 0.04%, Mn 1.0%, Ti 0.03%, Li 0.03%, Sn 0.11%, Cu 0.24%, Ni 10.0%, Cr 0.20%, Y 0.027%, La 0.16%, Tb is 0.014%, Dy is 0.016%, Ho is 0.29%, Eu is 0.014%, Er is 1.5%, Zn is 0.38%, Pb is 0.20%, and the rest is Al.
[0033] Its preparation method comprises the following steps:
[0034] Step S01: Li, Sn, Pb, Al are heated to 670° C. at a heating rate of 170° C. / min, and melted for 23 minutes.
[0035] Step S02: Add Zn to the molten metal in step S01 under the liquid surface without contacting with the air. After fully melting, stir and keep warm for 23 minutes, and cool down to room temperature at a cooling rate of 170°C / min to obtain a rough alloy embryo .
[0036] Step S03: Heat Sc, Mn, Ti, Cu, Ni, Cr, Y, La, Tb, Dy, Ho, Eu, Er at a heating rate of 170°C / min to 1910°C to melt, and add the rough alloy embryo after vacuuming , after each component is fully melted, it is cooled to roo...
Embodiment 2
[0041] A kind of alloy for aircraft fuselage, its raw material composition comprises:
[0042] Sc 0.01%, Mn 0.06%, Ti 0.03%, Li 0.01%, Sn 0.05%, Cu 0.21%, Ni 9.0%, Cr 0.18%, Y 0.01%, La 0.10%, Tb is 0.01%, Dy is 0.01%, Ho is 0.20%, Eu is 0.01%, Er is 0.50%, Zn is 0.31%, Pb is 0.10%, and the rest is Al.
[0043] Its preparation method comprises the following steps:
[0044] Step S01: Li, Sn, Pb, and Al are heated to 660° C. at a heating rate of 150° C. / min, and melted for 20 minutes.
[0045] Step S02: Add Zn under the molten metal liquid surface in step S01 without contacting with air. After fully melting, stir and keep warm for 20 minutes, and cool down to room temperature at a cooling rate of 150°C / min to obtain a rough alloy embryo .
[0046] Step S03: Heat Sc, Mn, Ti, Cu, Ni, Cr, Y, La, Tb, Dy, Ho, Eu, Er at a heating rate of 150°C / min to 1900°C to melt, and add the rough alloy embryo after vacuuming , after the components are fully melted, the temperature is lowered t...
Embodiment 3
[0051] A kind of alloy for aircraft fuselage, its raw material composition comprises:
[0052] Sc 0.08%, Mn 1.5%, Ti 0.04%, Li 0.04%, Sn 0.15%, Cu 0.20%, Ni 11.9%, Cr 0.21%, Y 0.03%, La 0.20%, Tb is 0.02%, Dy is 0.01%, Ho is 0.30%, Eu is 0.03%, Er is 3.0%, Zn is 0.42%, Pb is 0.50%, and the rest is Al.
[0053] Its preparation method comprises the following steps:
[0054] Step S01: Li, Sn, Pb, and Al are heated to 685° C. at a heating rate of 200° C. / min, and melted for 30 minutes.
[0055] Step S02: Add Zn to the molten metal in step S01 under the liquid surface without contact with air. After fully melting, stir and keep warm for 30 minutes, and cool down to room temperature at a cooling rate of 200°C / min to obtain a rough alloy embryo .
[0056] Step S03: Heat Sc, Mn, Ti, Cu, Ni, Cr, Y, La, Tb, Dy, Ho, Eu, Er at a heating rate of 200°C / min to 1950°C to melt, and add the rough alloy embryo after vacuuming , after the components are fully melted, the temperature is lowere...
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