High-plasticity magnesium alloy and preparation method thereof
A magnesium alloy, high plasticity technology, applied in the field of magnesium alloys, metal materials and metal material processing, can solve the problems of low room temperature plasticity, and achieve the advantages of inhibiting grain growth, good flame retardant performance, and promoting dynamic recrystallization and nucleation. Effect
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Embodiment 1
[0042] (1) Design and select the Mg-6.0Bi-3.2Nd-0.08Mn (wt%) alloy composition ratio to form a magnesium alloy. The preparation method includes the following steps: (wherein, the mass ratio Bi:Nd=6.0:3.2)
[0043] 1) Ingredients: Use pure Mg ingots, pure Bi blocks, Mg-30Nd master alloys and Mg-10Mn master alloys as raw materials, after surface pretreatment (removal of dirt, scale, etc.), and ingredients according to the above target ingredients;
[0044] 2) Melting: Set the furnace temperature to 730°C. When the furnace temperature rises to the predetermined temperature, put the pure Mg ingots preheated to 200°C into the crucible of the melting furnace. After they are melted, preheat them to 50°C The pure Bi block and the Mg-Nd master alloy preheated to 200°C are added to the molten magnesium; then the melting temperature is raised to 770°C and kept for 15 minutes, then stirred for 5 minutes, left for 5 minutes, and added to the preheated To the Mg-10Mn master alloy at 200°C, ...
Embodiment 2
[0052] (1) Design and select the Mg-5.2Bi-2.8Nd-0.05Mn (wt%) alloy composition ratio to form a magnesium alloy. The preparation method includes the following steps:
[0053] 1) Ingredients: Use pure Mg ingots, pure Bi blocks, Mg-30Nd master alloys and Mg-10Mn master alloys as raw materials, after surface pretreatment (removal of dirt, scale, etc.), and ingredients according to the above target ingredients; (where , mass ratio Bi:Nd=5.2:2.8)
[0054] 2) Melting: Set the furnace temperature to 730°C. When the furnace temperature rises to the predetermined temperature, put the pure Mg ingots preheated to 200°C into the crucible of the melting furnace. After they are melted, preheat them to 50°C The pure Bi block and the Mg-Nd master alloy preheated to 200°C are added to the molten magnesium; then the melting temperature is raised to 770°C and kept for 15 minutes, then stirred for 5 minutes, left for 5 minutes, and added to the preheated To the Mg-10Mn master alloy at 200°C, keep...
Embodiment 3
[0062] (1) Design and select Mg-4.5Bi-2.6Nd-0.08Mn (wt%) alloy composition ratio to form a magnesium alloy. The preparation method includes the following steps:
[0063] 1) Ingredients: Use pure Mg ingots, pure Bi blocks, Mg-30Nd master alloys and Mg-10Mn master alloys as raw materials, after surface pretreatment (removal of dirt, scale, etc.), and ingredients according to the above target ingredients; (where , mass ratio Bi:Nd=4.5:2.6)
[0064]2) Melting: Set the furnace temperature to 730°C. When the furnace temperature rises to the predetermined temperature, put the pure Mg ingots preheated to 200°C into the crucible of the melting furnace. After they are melted, preheat them to 50°C The pure Bi block and the Mg-Nd master alloy preheated to 200°C are added to the molten magnesium; then the melting temperature is raised to 770°C and kept for 15 minutes, then stirred for 5 minutes, left for 5 minutes, and added to the preheated To the Mg-10Mn master alloy at 200°C, keep it w...
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