High-performance aluminum alloy for casting thin-walled structural parts and preparation method of high-performance aluminum alloy
A thin-walled structural part and high-performance technology, applied in the field of aluminum alloys, can solve problems such as difficulty in sequential filling of molten metal, unfavorable air and smooth discharge of oxidized slag, etc., and achieve good filling ability, good machinability, and good casting performance effect
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Embodiment 1
[0054] A high-performance aluminum alloy for casting thin-walled structural parts, which consists of the following components in weight percentage:
[0055]
[0056] The preparation method of the high-performance aluminum alloy for casting thin-walled structural parts comprises the following steps:
[0057] 1) Feeding:
[0058] The forklift picks up the tray, puts aluminum ingots for remelting and industrial silicon into the melting / alloying furnace in batches, and starts melting;
[0059] 2) Melting alloying:
[0060] The melting and heating method adopts a regenerative combustion system. After the aluminum ingot is completely melted, it reaches 750°C. Add electrolytic manganese and fully stir for 2 minutes. Continue to heat up to 780°C. When it reaches this temperature, keep it for 40 minutes. Stir twice during the holding period, each time for 2 minutes.
[0061] 3) adjust
[0062] After the alloying is completed, add the reserved electrolytic aluminum cooling materia...
Embodiment 2
[0077] A high-performance aluminum alloy for casting thin-walled structural parts, which consists of the following components in weight percentage:
[0078]
[0079] The preparation method of the high-performance aluminum alloy for casting thin-walled structural parts comprises the following steps:
[0080] 1) Feeding:
[0081] The forklift picks up the tray, puts aluminum ingots for remelting and industrial silicon into the melting / alloying furnace in batches, and starts melting;
[0082] 2) Melting alloying:
[0083] The melting and heating method adopts a regenerative combustion system. After the aluminum ingot is completely melted, it reaches 750°C. Add electrolytic manganese and fully stir for 2 minutes. Continue to heat up to 800°C. When it reaches this temperature, keep it for 50 minutes. During the holding period, stir 3 times, each time for 3 minutes.
[0084] 3) adjust
[0085] After the alloying is completed, add the reserved electrolytic aluminum cooling mate...
Embodiment 3
[0100] A high-performance aluminum alloy for casting thin-walled structural parts, which consists of the following components in weight percentage:
[0101]
[0102]
[0103] 1) Feeding:
[0104] The forklift picks up the tray, puts aluminum ingots for remelting and industrial silicon into the melting / alloying furnace in batches, and starts melting;
[0105] 2) Melting alloying:
[0106] The melting and heating method adopts a regenerative combustion system. After the aluminum ingot is completely melted, it reaches 750°C. Add electrolytic manganese and fully stir for 2 minutes. Continue to heat up to 790°C. When it reaches this temperature, keep it for 50 minutes. During the holding period, stir twice, 2 minutes each time.
[0107] 3) adjust
[0108] After the alloying is completed, add the reserved electrolytic aluminum cooling material and titanium, and stir for 1 minute; add magnesium ingots, and use tools to press the magnesium ingots below the liquid level of the ...
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