Secondary peak aging method for high-vacuum die-casting high-speed gearbox shell containing rare earth aluminum-silicon alloy

A peak aging and vacuum die-casting technology, which is applied to transmission parts, mechanical equipment, belts/chains/gears, etc., can solve thin-wall remelting, it is difficult to meet the porosity requirements of drawings, and the porosity of cylinder blocks cannot be met, etc. Problems, to achieve the effect of improving tensile strength, reducing quality, and appropriate time

Active Publication Date: 2021-10-19
SHANGHAI AUTOMOBILE GEAR WORKS
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Problems solved by technology

[0003] The existing heat treatment process of die-casting aluminum alloy cylinder block often improves the average tensile strength of the cylinder block through high-temperature solid solution and low-temperature aging treatment, but these technologies still cannot avoid the internal defect structure of high-vacuum die-casting cylinder block parts during high-temperature solid solution , such as the expansion of pores and shrinkage cavities, which cannot meet the porosity requirements of the cylinder block, and the problems of bubbling on the surface and remelting at the thin wall
However, the high-speed gearbox shell has very strict requirements on porosity, and bubbling and remelting are prohibited. Therefore, it is difficult to improve the performance of the high-speed gearbox shell by solid solution aging method to meet the requirements of the drawing for porosity.

Method used

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  • Secondary peak aging method for high-vacuum die-casting high-speed gearbox shell containing rare earth aluminum-silicon alloy
  • Secondary peak aging method for high-vacuum die-casting high-speed gearbox shell containing rare earth aluminum-silicon alloy
  • Secondary peak aging method for high-vacuum die-casting high-speed gearbox shell containing rare earth aluminum-silicon alloy

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Embodiment Construction

[0012] The tensile test bar of this embodiment meets GB / T 13822, such as figure 1 shown. The raw material of the aluminum alloy adopts EN1706-ENAC-43400, AlSi10Mg(Fe), the mass fraction of Fe is controlled to be ≤0.65%, and low-cost lanthanum-cerium mixed rare earth with a mass fraction of ≤0.1% is added.

[0013] In the lanthanum-cerium mixed rare earth: the mass fraction of lanthanum is 70%, and the mass fraction of cerium is 30%.

[0014] The specific composition of AlSi10Mg (Fe) is shown in Table 1.

[0015] Vacuum die-casting adopts Toyo V3-350T vacuum die-casting machine, the vacuum degree is controlled at 50-100mbar, and the water is quenched immediately after the test rod is released from the mold. The water temperature is 60-75°C, and the maximum supersaturated solid solution is retained as much as possible.

[0016] Table 1 AlSi10Mg (Fe) chemical composition

[0017]

[0018] Then the vacuum die-casting aluminum alloy test rods were placed in a box-type aging f...

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Abstract

A secondary peak aging method for high-vacuum die-casting high-speed gear box shells containing rare earth aluminum-silicon alloys, by placing vacuum die-casting aluminum alloy test rods in a box-type aging furnace, and first heating up to 120°C at a rate of 6‑8°C / s Then keep warm for 20-30min, then continue to heat up at a rate of 4-6°C / s to 240°C, then keep warm for 20-30min, cool down to 210°C at a rate of 3°C / s, keep warm for 3-6 hours, and air-cool after aging. The properties of as-cast test rods were compared under the same casting process. The invention adopts secondary peak aging, and by adding low-cost mixed rare earths, short-term artificial aging at low temperature, controlling time and temperature, enhancing the aging effect, significantly improving the mechanical properties, and avoiding the use of high-temperature solid solution for the high-speed reduction box shell Bubbles and other defects appear on the surface.

Description

technical field [0001] The invention relates to a technology in the field of new energy automobile manufacturing, specifically a secondary peak value of die-casting aluminum alloy with a vacuum degree of 50-100mbar for new energy high-speed gearboxes by adding low-cost mixed lanthanum-cerium rare earth Prescription method. Background technique [0002] Traditional gear box shell casting generally adopts gravity casting, sand casting, etc., and there are often defects such as pores and shrinkage porosity inside. Therefore, during the high-temperature solution treatment process, bubbling and macroscopic deformation will occur on the shell surface, which will affect the shell performance. With the greatly increased torque and speed of new energy vehicles, the whole vehicle puts forward more stringent requirements for the performance and light weight of the high-speed gearbox shell. Therefore, it is necessary to reduce the internal defects of the casting itself through vacuum d...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16H57/032C22C21/02C22F1/043
CPCC22C21/02C22F1/043F16H57/032F16H2057/02017
Inventor 张鹏姚乙钱健丰华志建曾晓蕾
Owner SHANGHAI AUTOMOBILE GEAR WORKS
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