Processing method for improving high-temperature creep properties of magnesium alloys by rolling and pre-compression
A processing method and high-temperature creep technology, applied in metal rolling and other directions, can solve the problems that the high-temperature creep properties of alloys have a very large impact, limit the application scenarios of alloys, and affect the properties of alloys, so as to improve high-temperature creep properties and reduce costs. , the effect of grain refinement
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Embodiment 1
[0031] The magnesium alloy was prepared by water-cooled semi-continuous casting method, and the pure magnesium ingot (Mg 99.9%), pure aluminum ingot (Al 99.9%), pure zinc ingot (Zn 99.9%), Al-Mn master alloy and Mg-Y master alloy were smelted , the as-cast structure of the magnesium alloy is obtained by pouring. The mass percentage composition of the magnesium alloy is: Al: 8.5%, Zn: 0.90%, Mn: 0.3%, Y: 0.5%, and the rest is magnesium and impurity elements that cannot be removed.
[0032] The as-cast structure is subjected to solution treatment at 380°C×12h; then the solid solution structure is cut and rolled. The thickness before rolling is 80mm, the rolling temperature is 300°C, and the rolling speed is 0.2m / s. The number of passes is 8, the total deformation is 80%, and the temperature of the magnesium alloy after rolling is 305°C. The EBSD microstructure of the rolled magnesium alloy is as follows: figure 1 As shown, it can be seen that it has an obvious preferred orienta...
Embodiment 2
[0036]The magnesium alloy was prepared by water-cooled semi-continuous casting method, and the pure magnesium ingot (Mg 99.9%), pure aluminum ingot (Al 99.9%), pure zinc ingot (Zn 99.9%), Al-Mn master alloy and Mg-Y master alloy were smelted , the as-cast structure of the magnesium alloy is obtained by pouring. The mass percentage composition of the magnesium alloy is: Al: 9.5%, Zn: 0.45%, Mn: 0.4%, Y: 0.8%, and the rest is magnesium and impurity elements that cannot be removed.
[0037] The as-cast structure is solution treated at 400°C×8h; then the solid solution structure is cut and rolled. The thickness before rolling is 80mm, the rolling temperature is 350°C, and the rolling speed is 0.4m / s. The number of passes is 5, the total deformation is 70%, and the temperature of the magnesium alloy after rolling is 250°C. The EBSD microstructure of the rolled magnesium alloy is as follows: Figure 6 As shown, it can be seen that it has an obvious preferred orientation, and the te...
Embodiment 3
[0040] The magnesium alloy was prepared by water-cooled semi-continuous casting method, and the pure magnesium ingot (Mg 99.9%), pure aluminum ingot (Al 99.9%), pure zinc ingot (Zn 99.9%), Al-Mn master alloy and Mg-Y master alloy were smelted , the as-cast structure of the magnesium alloy was obtained by pouring. The mass percentage composition of the magnesium alloy is: Al: 9.1%, Zn: 0.61%, Mn: 0.15%, Y: 0.3%, and the rest is magnesium and impurity elements that cannot be removed.
[0041] The as-cast structure is solution treated at 420°C×4h; then the solid solution structure is cut and rolled. The thickness before rolling is 80mm, the rolling temperature is 400°C, and the rolling speed is 0.6m / s. The number of passes is 3, the total deformation is 50%, and the temperature of the magnesium alloy after rolling is 340°C. The EBSD microstructure of the rolled magnesium alloy is as follows: Figure 8 As shown, the rolled microstructure has obvious preferred orientation, and the...
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