Method for casting aluminium alloy
An aluminum alloy and alloy technology, applied in the field of aluminum alloy casting, can solve problems such as cracks in ingots
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specific Embodiment approach 1
[0004] Specific Embodiment 1: This embodiment is achieved through the following steps: 1. Complete the alloy Si: 1.0-1.05%, Mg: 0.45 0.75%, Cu: 4.10-4.70%, Ti: 0.02-0.10%, Mn: 0.85-0.90% , single impurity ≤ 0.05%, total impurity ≤ 0.10%, the rest is the batching work of Al and makes the weight percent of Si in the alloy composition be controlled at 1.0~1.05%, the weight percent of Mn is controlled at 0.85~0.90%; Two, the alloy Melting under the condition of heating to 720-770°C, argon or chlorine gas is passed through the bottom of the alloy melt for 15-20 minutes, and then left to stand for 27-32 minutes; 3. Pour the alloy melt into the cavity, and the pouring is half completed Stop for 3 to 5 seconds, then continue pouring, and keep the alloy temperature at 740-750°C during the pouring process. This embodiment also includes step 4, adding molten aluminum to the cavity at any time until the alloy in the cavity is solidified. The purpose of adding this step is to add molten a...
specific Embodiment approach 2
[0005] Embodiment 2: The difference between this embodiment and Embodiment 1 is that in step 2, the alloy is smelted under the condition that the alloy is heated to 730° C., and chlorine gas is passed into the bottom of the alloy melt for 20 minutes. Other steps are the same as the first embodiment.
specific Embodiment approach 3
[0006] Embodiment 3: The difference between this embodiment and Embodiment 1 is that in step 2, the alloy is smelted under the condition that the alloy is heated to 760° C., and the bottom of the alloy melt is injected with argon gas for 15 minutes. Other steps are the same as the first embodiment.
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