A high yield-strength ratio wrought magnesium alloy containing rare earth cerium and yttrium
A deformed magnesium alloy, high yield ratio technology, applied in the field of magnesium alloy, can solve the problems of temperature control range error, uneven processing deformation, difficult to control, etc., to achieve the effects of hindering growth, easy operation and control, and increased elongation Effect
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Embodiment 1
[0028] Zn4.98wt.%, Zr0.76wt.%, Ce0.52wt.%, Y0.28wt.%, unavoidable impurities <0.12wt.%, the balance is Mg.
[0029] The preparation method of the above-mentioned high yield ratio deformed Mg-Zn-Zr magnesium alloy containing rare earth cerium and yttrium comprises the following steps:
[0030] a) Alloy smelting and casting:
[0031] Raw materials: industrial pure magnesium ingot, pure zinc ingot, Mg-28.54%Zr master alloy, Mg-30%Ce master alloy and Mg-30%Y master alloy.
[0032] Casting by semi-continuous casting method: SF at a volume ratio of 1:99 6 and CO 2 Under the protection of the mixed gas, put the magnesium ingot into the crucible and heat up to 740°C for slag after melting; then add pure zinc ingot and Mg-28.54%Zr master alloy, before adding Preheat the master alloy at 170°C for 25 minutes, quickly press it below the liquid surface when adding it, stir it for 5 minutes after melting, make it mix evenly, and let it stand for 15 minutes; then add Mg-30%Ce master alloy...
Embodiment 2
[0041] The preparation method of the above-mentioned high yield ratio deformed Mg-Zn-Zr magnesium alloy containing rare earth cerium and yttrium comprises the following steps:
[0042] a) Alloy smelting and casting:
[0043] Raw materials: industrial pure magnesium ingot, pure zinc ingot, Mg-28.54%Zr master alloy, Mg-30%Ce master alloy and Mg-30%Y master alloy.
[0044] Casting by semi-continuous casting method: SF at a volume ratio of 5:95 6 and CO 2Under the protection of the mixed gas, put the magnesium ingot into the crucible and heat up to 750°C for slag after melting; then add pure zinc ingot and Mg-28.54%Zr master alloy, before adding Preheat the master alloy at 140°C for 25 minutes, quickly press it below the liquid surface when adding it, stir it for 5 minutes after melting, make it mix evenly, and let it stand for 10 minutes; then add Mg-30%Ce master alloy and Mg- 30% Y intermediate alloy, stir evenly after melting, after standing at 750°C for 20 minutes, salvage ...
Embodiment 3
[0053] The preparation method of the above-mentioned high yield ratio deformed Mg-Zn-Zr magnesium alloy containing rare earth cerium and yttrium comprises the following steps:
[0054] a) Alloy smelting and casting:
[0055] Raw materials: industrial pure magnesium ingot, pure zinc ingot, Mg-28.54%Zr master alloy, Mg-30%Ce master alloy and Mg-30%Y master alloy.
[0056] Casting by semi-continuous casting method: SF at a volume ratio of 3:97 6 and CO 2 Under the protection of the mixed gas, put the magnesium ingot into the crucible and heat up to 760°C for slag after melting; then add pure zinc ingot and Mg-28.54%Zr master alloy, before adding Preheat the master alloy at 140°C for 25 minutes, quickly press it below the liquid surface when adding it, stir it for 5 minutes after melting, make it mix evenly, and let it stand for 10 minutes; then add Mg-30%Ce master alloy and Mg- 30% Y intermediate alloy, stir evenly after melting, after standing at 750°C for 20 minutes, salvage...
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