Preparation method for magnesium alloy profile material for automobile oil tank
A technology of automotive fuel tanks and magnesium alloys, applied in the layout combined with the fuel supply of internal combustion engines, vehicle components, substructures, etc., can solve the problems of high cost, short service life, poor corrosion resistance, etc., achieve low cost, improve room temperature and High temperature performance, effect of improving mechanical properties
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Embodiment 1
[0039] This embodiment provides a magnesium alloy profile for an automobile fuel tank, and the magnesium alloy profile includes the following components in terms of mass percentage:
[0040] Al: 8%, Mn: 2%, Zn: 10%, Ni: 1%, Ca: 7%, Cu: 1%, Sc: 1%, P: 0.2%, Zr: 1%, B: 2%, V: 0.1%, Nb: 0.002%, So: 2%, C: 0.01%, Co: 2%, Fe: 0.2%, rare earth elements 0.5-0.8%, and the rest is Mg;
[0041] Rare earth elements include the following components by weight percentage: Ce: 8%, Nd: 15%, Gd: 10%, Pr: 11%, Yb: 3%, La: 12%, Sm: 10%, and the balance is the rest Lanthanides.
[0042]The preparation method of the above-mentioned magnesium alloy profile for the automobile fuel tank is operated according to the following specific steps:
[0043] (1) According to the shape of the automobile fuel tank, use quartz sand, water glass and bentonite as the molding materials to make the corresponding casting mold, and open the gate on the casting mold, then blow the casting mold with warm air, and then...
Embodiment 2
[0058] This embodiment provides a magnesium alloy profile for an automobile fuel tank, and the magnesium alloy profile includes the following components in terms of mass percentage:
[0059] Al: 15%, Mn: 4%, Zn: 13%, Ni: 3%, Ca: 9%, Cu: 3%, Sc: 3%, P: 0.3%, Zr: 3%, B: 4%, V: 0.4%, Nb: 0.004%, So: 5%, C: 0.03%, Co: 4%, Fe: 0.5%, rare earth elements 0.5-0.8%, and the rest is Mg;
[0060] Rare earth elements include the following components by weight percentage: Ce: 10%, Nd: 18%, Gd: 15%, Pr: 13%, Yb: 5%, La: 15%, Sm: 15%, and the balance is the rest Lanthanides.
[0061] The preparation method of the above-mentioned magnesium alloy profile for the automobile fuel tank is operated according to the following specific steps:
[0062] (1) According to the shape of the automobile fuel tank, use quartz sand, water glass and bentonite as the molding materials to make the corresponding casting mold, and open the gate on the casting mold, then blow the casting mold with warm air, and t...
Embodiment 3
[0077] This embodiment provides a magnesium alloy profile for an automobile fuel tank, and the magnesium alloy profile includes the following components in terms of mass percentage:
[0078] Al: 12%, Mn: 3%, Zn: 12%, Ni: 2%, Ca: 8%, Cu: 2%, Sc: 2%, P: 0.25%, Zr: 2%, B: 3%, V: 0.2%, Nb: 0.003%, So: 4%, C: 0.02%, Co: 3%, Fe: 0.4%, rare earth element 0.6%, and the rest is Mg;
[0079] Rare earth elements include the following components by weight percentage: Ce: 9%, Nd: 16%, Gd: 13%, Pr: 12%, Yb: 4%, La: 13%, Sm: 13%, and the balance is the rest Lanthanides.
[0080] The preparation method of the above-mentioned magnesium alloy profile for the automobile fuel tank is operated according to the following specific steps:
[0081] (1) According to the shape of the automobile fuel tank, use quartz sand, water glass and bentonite as the molding materials to make the corresponding casting mold, and open the gate on the casting mold, then blow the casting mold with warm air, and then s...
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