Cast aluminum alloy for high-voltage power control assembly and preparation method of cast aluminum alloy
A technology for casting aluminum alloys and control components, applied in the field of aluminum alloys, can solve the problems of not being able to meet the requirements of mechanical properties and electrical conductivity of high-voltage power control components at the same time, small thermal tendency, poor electrical conductivity, etc., to reduce lattice defects, The effect of reducing distortion and improving electrical conductivity
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[0049] Correspondingly, the present invention also provides a method for preparing cast aluminum alloys for high-voltage power control components described in the above technical solution, including the following steps:
[0050] Put aluminum ingots and AlSi25 master alloy into the melting furnace, heat to 740~760°C for smelting, and adjust the Si content;
[0051] Add the boron of 0.06wt% total amount of feeding into described smelting furnace, leave standstill after stirring;
[0052] Take the upper melt sample of the smelting furnace, and test the V content of the sample to be below 0.005 wt %, and the electrical conductivity to reach 31.5~32MS / m;
[0053] Add 0.15wt% La in the total amount of feed, and stir the upper melt slightly after fully melting until the components are uniform;
[0054] Refining in argon, the pinholes reach the secondary standard, add 0.07wt% Mg after refining, and let stand;
[0055] Take the aluminum liquid in the upper layer of the melt as a spec...
Embodiment 1
[0068] (1) Cleaning of the melting crucible: In order to ensure the purity of the melt during the preparation process, the melting crucible should be thoroughly cleaned to ensure that there is no residue in the crucible;
[0069] (2) Melting: input Al 00 (Fe≈0.105wt%) and aluminum-silicon master alloy, melt and heat up to 750±10°C, detect chemical composition by spectroscopy, adjust Si element to 0.70wt%;
[0070] (3) Melt purification (step 1): add boron with a total weight of 0.05% of the total amount of feed, stir evenly and let stand for 20 minutes;
[0071] (4) Sample detection: Take the upper melt sample of the melting furnace, and it is strictly forbidden to stir the melt when sampling. The V content of the test sample reaches below 0.005wt%;
[0072] (5) Melt purification (step 2): Add La rare earth with a total amount of 0.10% by weight of the ingredients, and after fully melting, stir the upper melt slightly until the components are uniform;
[0073] (6) Refining ...
Embodiment 2
[0077] (1) Cleaning of the melting crucible: In order to ensure the purity of the melt during the preparation process, the melting crucible must be thoroughly cleaned to ensure that there is no residue in the crucible;
[0078] (2) Melting: input Al 00 (Fe≈0.105 wt %) and aluminum-silicon master alloy, melt and heat up to 750±10°C, detect the chemical composition by spectroscopy, and adjust the Si element to 1.00 wt %;
[0079] (3) Melt purification (step 1): add boron with a total weight of 0.08% of the total amount of material fed, stir evenly and let stand for 20 minutes;
[0080] (4) Sample detection: Take the upper melt sample of the melting furnace, and it is strictly forbidden to stir the melt when sampling. The V content of the test sample reaches below 0.005 wt %;
[0081] (5) Melt purification (step 2): Add La rare earth with a total amount of 0.13% by weight of the ingredients, fully melt and then slightly stir the upper melt until the components are uniform;
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