An electrical aluminum alloy round rod for aluminum-based electromagnetic wire and its production process
A production process, a technology of electromagnetic wire, applied in the field of electrical aluminum alloy round rods for aluminum-based electromagnetic wires and its production technology, can solve the problems of rising production costs, intertwining, inconvenient cooling of aluminum rods, etc., to reduce pores and prevent intertwined effect
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Embodiment 1
[0030] An electrical aluminum alloy round rod for an aluminum-based electromagnetic wire, prepared from the following raw materials in parts by weight: 95.2 parts of aluminum, 3.2 parts of lanthanum, 1.3 parts of cerium, 2.2 parts of antimony, 1.2 parts of boron, 3.2 parts of copper, 1.6 parts of zirconium, 1.5 parts titanium, 0.8 parts yttrium, 1.1 parts manganese;
[0031] Wherein, the aluminum-based electromagnetic wire is prepared by using an electrical aluminum alloy round rod through the following steps:
[0032] Step 1: Add aluminum into the smelting furnace, smelt to obtain molten aluminum, and control the temperature of the molten aluminum at 650°C;
[0033] Step 2: Add lanthanum, antimony, boron, copper, zirconium, titanium, yttrium, and manganese into the melting furnace and keep it warm for 5 minutes;
[0034] Step 3: Raise the temperature of the smelting furnace to 700°C, add cerium after the lanthanum, antimony, boron, copper, zirconium, titanium, yttrium, and m...
Embodiment 2
[0038] An electrical aluminum alloy round rod for an aluminum-based electromagnetic wire, prepared from the following raw materials in parts by weight: 98.3 parts of aluminum, 3.8 parts of lanthanum, 2.8 parts of cerium, 2.9 parts of antimony, 1.9 parts of boron, 4.5 parts of copper, 2.5 parts of zirconium, 1.8 parts titanium, 1.5 parts yttrium, 1.7 parts manganese;
[0039] Wherein, the aluminum-based electromagnetic wire is prepared by using an electrical aluminum alloy round rod through the following steps:
[0040] Step 1: Add aluminum into the smelting furnace, smelt to obtain molten aluminum, and control the temperature of the molten aluminum at 740°C;
[0041] Step 2: Add lanthanum, antimony, boron, copper, zirconium, titanium, yttrium, and manganese into the melting furnace and keep it warm for 30 minutes;
[0042] Step 3: Raise the temperature of the smelting furnace to 750°C, add cerium after the lanthanum, antimony, boron, copper, zirconium, titanium, yttrium, and ...
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