High thermal conductivity aluminum alloy and preparation method thereof
An aluminum alloy and high thermal conductivity technology, which is applied in the field of high thermal conductivity aluminum alloy, can solve problems such as affecting work and component heating, and achieves the effects of good corrosion resistance, low raw material cost, and reduced production cost
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Embodiment 1
[0023] Prepare the following components: Aluminum 88.65%; Silicon: 9%; Magnesium 0.35%; Iron: 0.35%; Manganese: 0.35%; Copper: 0.005%; Boron: 0.01; ; the rest is aluminum;
[0024] Such as figure 1 As shown, the above materials are combined as follows:
[0025] (1) Ingredients calculation;
[0026] (2) According to the calculated ingredients, pure aluminum is added to the melting furnace for melting. The melting furnace is a resistance furnace, and the temperature is kept at 720° C. after melting;
[0027] (3) Add silicon for smelting, and keep the temperature at 720°C after smelting;
[0028] (4) Add iron for smelting, and keep the temperature at 720°C after smelting;
[0029] (5) Add magnesium for smelting, and keep the temperature at 720°C after smelting;
[0030] (6) Add aluminum-zirconium master alloy, aluminum-titanium master alloy, aluminum-boron master alloy for melting, and keep the temperature at 690°C after melting;
[0031] (7) Stir the aluminum alloy liquid ...
Embodiment 2
[0035] Prepare the following components: aluminum: 89.9%; silicon: 9.5%; magnesium 0.55%; iron 0.55%; manganese 0.5%; copper: 0.004%; boron: 0.02%; 0.01%; the remainder is aluminum.
[0036] Such as figure 1 As shown, the above materials are combined as follows:
[0037] (1) Ingredients calculation;
[0038] (2) According to the calculated ingredients, pure aluminum is added to the melting furnace for melting. The melting furnace is an induction furnace, and the temperature is kept at 740 ° C after melting;
[0039] (3) Add silicon for smelting, and keep the temperature at 740°C after smelting;
[0040] (4) Add iron for smelting, and keep the temperature at 740°C after smelting;
[0041] (5) Add magnesium for smelting, and keep the temperature at 740°C after smelting;
[0042] (6) Add aluminum-zirconium master alloy, aluminum-titanium master alloy, aluminum-boron master alloy for melting, and keep the temperature at 710°C after melting;
[0043] (7) Stir the aluminum all...
Embodiment 3
[0047] Prepare the following components: Aluminum: 89.5%; Silicon: 9.2%; Magnesium 0.4%; Iron: 0.45%; Manganese: 0.4%; Copper: 0.005%; Boron: 0.02%; Zinc: 0.02%; the rest is aluminum.
[0048] Such as figure 1 As shown, the above materials are combined as follows:
[0049] (1) Ingredients calculation;
[0050] (2) According to the calculated ingredients, add pure aluminum into the melting furnace for smelting. The melting furnace is a reverberatory furnace, and the temperature is kept at 720°C after smelting;
[0051] (3) Add silicon for smelting, and keep the temperature at 730°C after smelting;
[0052] (4) Add iron for smelting, and keep the temperature at 730°C after smelting;
[0053] (5) Add magnesium for smelting, and keep the temperature at 730°C after smelting;
[0054] (6) Add aluminum-zirconium master alloy, aluminum-titanium master alloy, aluminum-boron master alloy for melting, and keep the temperature at 700°C after melting;
[0055] (7) Stir the aluminum a...
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