High-thermal-conductivity die-casting aluminum alloy material produced from secondary aluminum and preparation method thereof
A technology of casting aluminum alloy and high thermal conductivity, which is applied in the field of aluminum alloy
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preparation Embodiment 1
[0028] The high thermal conductivity die-casting aluminum alloy material of this embodiment was prepared by the following steps:
[0029] (1) Dosing waste aluminum wire, waste magnesium, aluminum-strontium master alloy, aluminum-boron master alloy, iron additive and silicon according to the following weight percentages: Si: 7.0% to 11.0%, Mg: 0.3% to 1.0%, Fe: 0.6%~0.90%, Sr: 0.02%~0.06%, B≤0.03%, the balance is Al;
[0030] (2) Melt the raw materials, put 85% (by weight) of the waste aluminum wire into the furnace, start the fire to melt, add silicon when the temperature of the molten aluminum is 800°C to 850°C, stir well until it dissolves, and then Al-boron master alloy and iron additives are added, and the melting temperature is 750°C to 800°C.
[0031] (3) Add the remaining 15% (by weight) of waste aluminum wire, adjust the temperature to 720°C to 740°C, add waste magnesium, stir evenly,
[0032] (4) Carry out flux refining to the alloy melt of step (3), refining temper...
preparation Embodiment 2
[0041] The high thermal conductivity die-casting aluminum alloy material was prepared in the same steps as in Preparation Example 1, wherein the weight percentages of the elements in step (1) were: Si: 9.0% to 10.0%, Mg: 0.8% to 1.0%, Fe: 0.6% ~0.75% Sr: 0.02%~0.06%, B≤0.03%, the balance is Al.
preparation Embodiment 3
[0043] The high thermal conductivity die-casting aluminum alloy material was prepared in the same steps as in Preparation Example 1, wherein the weight percentages of the elements in step (1) were: Si: 8.0% to 10.0%, Mg: 0.7%, Fe: 0.6% to 0.75% Sr: 0.02% to 0.06%, B≤0.03%, and the balance is Al.
[0044] After testing, the thermal conductivity of the aluminum alloy material prepared in Preparation Examples 1-3 is ≥160w / m·k. Wherein the product of Preparation Example 2 has a tensile strength ≥ 290 MPa, a yield strength ≥ 160 MPa, and an elongation ≥ 4% in the die-cast state. Artificial aging (320 degrees for 3 hours) of die-casting parts, thermal conductivity ≥ 180w / m·k, but the mechanical properties will be slightly reduced, and still meet the use requirements for signal base stations.
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