Corrosion resistant magnesium alloy material and preparation method thereof
A magnesium alloy, corrosion-resistant technology, applied in the field of corrosion-resistant magnesium alloy materials and its preparation, can solve the problems of limited application, high cost, difficult mass production, etc., and achieve the effect of wide source and high price
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Embodiment 1
[0026] Purchase pure Mg, pure Sn, pure Sb, MgY10 master alloy, and MgNd10 master alloy with impurity content within the required range, and configure the components according to the content of the master alloy elements, as shown in Table 1.
[0027] Table 1 Ingredients weight and element content
[0028]
Sn / g
Sn / wt%
Sb / g
Sb / wt%
MgY10 / g
Y / wt%
MgNd10 / g
Nd / wt%
Mg / g
Mg / wt%
1#
150
1.5
120
1.2
400
0.4
3000
3
6330
63.3
[0029] The process is to heat pure magnesium, pure Sn, and pure Sb in an industrial power frequency induction melting furnace, and then pass in 1.5L / min argon gas for protection when heated to 402°C, heat to 720°C, and keep warm for 20 minutes Completely melt the material, keep the melt temperature at 720°C for 20 minutes after melting, add Mg-Nd master alloy and Mg-Y master alloy in turn, keep the melt temperature at 720°C after melting, keep ...
Embodiment 2
[0038] Purchase pure Mg, pure Sn, pure Sb, MgY10 master alloy, and MgNd10 master alloy with impurity content within the required range, and configure the components according to the content of the master alloy elements, as shown in Table 3.
[0039] Table 3 Ingredients weight and element content
[0040]
Sn / g
Sn / wt%
Sb / g
Sb / wt%
MgY10 / g
Y / wt%
MgNd10 / g
Nd / wt%
Mg / g
Mg / wt%
2#
200
2.0
300
3.0
800
0.8
2500
2.5
6200
62
[0041] The process is as follows: firstly heat pure magnesium, pure Sn, and pure Sb in an industrial power frequency induction melting furnace, and then pass in 1.6L / min argon gas for protection when heated to 405°C, heat to 715°C, and keep warm for 25 After melting, keep the melt temperature at 715°C for 20 minutes, add Mg-Nd master alloy and Mg-Y master alloy in turn, keep the melt temperature at 715°C after melting, and keep it warm for 13 m...
Embodiment 3
[0051] Purchase pure Mg, pure Sn, pure Sb, MgY10 master alloy, and MgNd10 master alloy with impurity content within the required range, and configure the components according to the content of the master alloy elements, as shown in Table 5.
[0052] Table 5 Ingredients weight and element content
[0053]
Sn / g
Sn / wt%
Sb / g
Sb / wt%
MgY10 / g
Y / wt%
MgNd10 / g
Nd / wt%
Mg / g
Mg / wt%
3#
350
3.5
200
2.0
1200
1.2
800
0.8
7450
74.5
[0054] The process is as follows: firstly heat pure magnesium, pure Sn, and pure Sb in an industrial power frequency induction melting furnace, and then pass in 1.8L / min argon gas for protection when heated to 406°C, heat to 710°C, and keep warm for 22 After melting, keep the melt temperature at 710°C for 20 minutes, add Mg-Nd master alloy and Mg-Y master alloy in turn, keep the melt temperature at 710°C after melting, and keep it for 14 minu...
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