Liquid die forging/rolling composite forming method for magnesium alloy irregular-section large-size ring piece
A liquid die forging and rolling composite technology, applied in the direction of metal rolling, etc., can solve the problem that the comprehensive mechanical properties of metal rings cannot meet the requirements for the use of launch vehicles, cannot meet the processing requirements of complex cross-section rings, and the comprehensive mechanical properties of rings decrease and other problems, to achieve the effect of improving material utilization, increasing productivity and economic benefits, and improving comprehensive mechanical properties
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no. 1 example
[0031] The liquid die forging and rolling composite forming method of magnesium alloy large rings with different cross-sections in this embodiment includes smelting→liquid die forging→homogenization→waste heat isothermal rolling→heat treatment→finishing. The magnesium alloy in this example is AZ91D magnesium alloy, and its chemical composition (wt. %) is: Al: 8.9, Zn: 0.62, Cu: 0.025, Mn: 0.35, Si: 0.02, Fe: 0.004, Ni: 0.001, and the rest For Mg, the specific process steps of the liquid die forging and rolling composite forming method of the large-scale ring with different cross-sections of the AZ91D magnesium alloy are as follows:
[0032] 1. Smelting: The raw materials used in smelting are magnesium ingots, pure zinc ingots, aluminum ingots, copper ingots and intermediate alloys, and magnesium ingots, pure zinc ingots and aluminum ingots need to remove the scale and dirt on the surface before smelting. After cleaning, bake in an electric furnace to remove the contained water...
no. 2 example
[0053] The liquid die forging and rolling composite forming method of magnesium alloy large rings with different cross-sections in this embodiment includes smelting→liquid die forging→homogenization→waste heat isothermal rolling→heat treatment→finishing. The magnesium alloy in this example is AZ91D magnesium alloy, and its chemical composition (wt. %) is: Al: 9.2, Zn: 0.75, Cu: 0.025, Mn: 0.22, Si: 0.02, Fe: 0.004, Ni: 0.001, and the rest For Mg, the specific process steps of the liquid die forging and rolling composite forming method of the large-scale ring with different cross-sections of the AZ91D magnesium alloy are as follows:
[0054] 1. Smelting: The raw materials used in smelting are magnesium ingots, pure zinc ingots, aluminum ingots, copper ingots and intermediate alloys, and magnesium ingots, pure zinc ingots and aluminum ingots need to remove the scale and dirt on the surface before smelting. After cleaning, bake in an electric furnace to remove the contained water...
no. 3 example
[0075] The liquid die forging and rolling composite forming method of magnesium alloy large rings with different cross-sections in this embodiment includes smelting→liquid die forging→homogenization→waste heat isothermal rolling→heat treatment→finishing. The magnesium alloy in this example is AZ91D magnesium alloy, and its chemical composition (wt. %) is: Al: 8.6, Zn: 0.53, Cu: 0.025, Mn: 0.22, Si: 0.02, Fe: 0.004, Ni: 0.001, and the rest For Mg, the specific process steps of the liquid die forging and rolling composite forming method of the large-scale ring with different cross-sections of the AZ91D magnesium alloy are as follows:
[0076] 1. Smelting: The raw materials used in smelting are magnesium ingots, pure zinc ingots, aluminum ingots, copper ingots and intermediate alloys, and magnesium ingots, pure zinc ingots and aluminum ingots need to remove the scale and dirt on the surface before smelting. After cleaning, bake in an electric furnace to remove the contained water...
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