7050 alloy ingot casting material and preparation method thereof
An alloy ingot and alloy material technology, which is applied in the field of 7050 alloy material and ingot preparation, can solve the problems of low production efficiency, difficult casting of 7050, and high casting cost of large-size slabs, so as to reduce costs and reduce defective rates. , cooling effect uniform effect
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2022-03-25
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Abstract
Description
technical field
[0001] The invention relates to the technical field of aluminum alloy preparation, in particular to a 7050 alloy material and an ingot preparation method thereof. Background technique
[0002] 7075 aluminum alloy has a compact structure and strong corrosion resistance. It is the best for aviation and marine plates. With the rapid development of the aerospace industry, the demand for 7050 alloy is increasing. However, 7050 high-strength and high-toughness aluminum alloy is difficult to form. The problem of poor internal metallurgy, the products produced according to the traditional technology can not meet the technical requirements.
[0003] Chinese patent: a high-performance Al-Zn-Mg-Cu alloy, patent authorization number: CN 113481416 A, patent authorization date: October 8, 2021, the preparation of the mentioned alloy can produce more A product with high comprehensive performance. The product has the characteristics of high strength, high toughness, high ha...
Examples
Embodiment 1
[0051] A low-cost large-scale 7050 alloy material, its chemical elements and their mass percentages are as follows:
[0052] Si ≤ 0.12wt%, Fe ≤ 0.15wt%, Cu 2.0wt% ~ 2.6wt%, Mn ≤ 0.10wt%, Mg 1.9wt% ~ 2.6wt%, Cr ≤ 0.04wt%, Zn 5.7wt% ~ 6.7 wt%, Ti≤0.06wt%, Zr0.09wt%~0.14wt%, Be 0.0005~0.02%, the balance is aluminum and unavoidable impurities.
[0053] Concrete material preparation method comprises the following steps:
[0054] Step 1, batching; use 99.7% and 99.85% aluminum ingots, zinc ingots, metal magnesium ingots, aluminum-zirconium alloys, and titanium agents, and determine the above-mentioned feeding amount according to the internal control chemical composition and the specifications and quantities of the ingots, at 0.25kg / ton Aluminum is added to aluminum beryllium alloy.
[0055] Step 2, smelting: After completing the above calculation steps, add aluminum ingots and titanium agents to the smelting furnace, wait until the metal is completely melted, and when the metal te...
Embodiment 2
[0067] A low-cost large-scale 7050 alloy material, its chemical elements and their mass percentages are as follows:
[0068] Si ≤ 0.12wt%, Fe ≤ 0.15wt%, Cu 2.0wt% ~ 2.6wt%, Mn ≤ 0.10wt%, Mg 1.9wt% ~ 2.6wt%, Cr ≤ 0.04wt%, Zn 5.7wt% ~ 6.7 wt%, Ti≤0.06wt%, Zr0.09wt%~0.14wt%, Be 0.0005~0.02%, the balance is aluminum and unavoidable impurities.
[0069] Ingredients: use 99.7% and 99.85% aluminum ingots, zinc ingots, metal magnesium ingots, aluminum-zirconium alloys, and titanium agents. The above-mentioned feeding amount is determined according to the internal control chemical composition and the specifications and quantities of ingots. Add aluminum at 0.25kg / ton Aluminum beryllium alloy.
[0070] Melting: After completing the above calculation steps, add aluminum ingots and titanium agents to the melting furnace, and start slag removal when the metal is completely melted and the metal temperature reaches 740-760°C, then add zinc ingots, metal magnesium ingots, and aluminum-zircon...