Cast aluminum copper alloy material and its application
A technology of copper alloy and cast aluminum, which is applied in the field of cast aluminum-copper alloy, can solve the problems that it is difficult to meet the technical requirements of complex pump shell casting, cannot meet the high-strength requirements of the pump shell, and has low tensile strength. Overcome the problem of hot cracking tendency, realize the effect of light weight and low hot cracking resistance
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Embodiment 1
[0052] Embodiment 1: The high-strength and high-toughness cast aluminum alloy material in this embodiment includes the following composition by weight percentage: Cu: 5.00%; Mn: 0.60%; Mg: 0.20%; Ti: 0.15%; Zr: 0.40% ; Sc: 0.20; the balance is Al and unavoidable impurities. The technical characteristics of its smelting and casting method are:
[0053] The charge forms of pure aluminum, pure magnesium, Al-50Cu, Al-10Mn, Al-10Ti, Al-10Zr, Al-2Sc intermediate alloys are used.
[0054] All furnace materials are cleaned on the surface and should be free of dust and oil; they are all baked at a temperature of about 150°C for 1 to 2 hours; they are smelted in an intermediate frequency induction furnace.
[0055] First melt the pure aluminum charge at 700-720°C, then add the charge of aluminum-copper, aluminum-manganese, aluminum-scandium, aluminum-titanium and aluminum-zirconium master alloy in sequence, and control the melt temperature not higher than 780°C; after all the alloys ar...
Embodiment 2
[0062] Embodiment 2: In this embodiment, Cu: 5.80%; Mn: 0.50%; Mg: 0.30%; Ti: 0.35%; Zr: 0.30%; Sc: 0.15%; the balance is Al and unavoidable impurities. All the other steps are the same as in Example 1.
Embodiment 3
[0063] Embodiment 3: The cast aluminum alloy material in this embodiment includes the following composition by weight percentage: Cu: 4.70%; Mn: 0.70%; Mg: 0.40%; Ti: 0.25%; Zr: 0.60%; Sc: 0.30% ; The balance is Al and unavoidable impurities. All the other steps are the same as in Example 1.
[0064] Table 1 The mechanical properties and thermal cracking problems of Example 1, Example 2 and Example 3
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