A kind of ultra-high-strength aluminum alloy wire and its production process
A technology of aluminum alloy wire and production process, which is applied in the field of metallurgy, can solve the problems that it is difficult to obtain ultra-high strength aluminum alloy wire with high strength and conductivity, high conductivity, low conductivity, etc., and achieve low solid solubility and high conductivity , high-strength effect
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Embodiment 1
[0048] The ultra-high-strength aluminum alloy wire of this embodiment contains the following components by weight percentage: Zn 3.75%, Mg 1.83%, Si 0.85%, Cu 1.3%, Fe 0.3%, Ti 0.008%, B 0.01 %, the balance is Al.
[0049] The production process of the ultra-high-strength aluminum alloy wire of this embodiment includes the following steps:
[0050] S1: Melting: smelt aluminum ingots, inject them into the holding furnace, and then sequentially add zinc ingots, aluminum-copper alloy ingots, aluminum-iron alloy ingots, aluminum-silicon alloy ingots, aluminum-boron alloy ingots, magnesium ingots and aluminum-titanium alloy ingots to make aluminum alloy liquid. An aluminum ingot with an aluminum content of 99.85% is used to ensure that the component content in the aluminum alloy liquid is consistent with the chemical composition of an ultra-high-strength aluminum alloy wire in claim 1. The temperature in the holding furnace is 720°C.
[0051] Stirring: Use an automatic stirrer to...
Embodiment 2
[0067] The ultra-high-strength aluminum alloy wire of this embodiment includes the following components by weight percentage: Zn5.5%, Mg2.1%, Si0.93%, Cu1.54%, Fe0.45%, Ti0.013%, B0.57 %, the balance is Al.
[0068] The production process of the ultra-high-strength aluminum alloy wire of this embodiment includes the following steps:
[0069] S1: Melting: smelt aluminum ingots, inject them into the holding furnace, and then sequentially add zinc ingots, aluminum-copper alloy ingots, aluminum-iron alloy ingots, aluminum-silicon alloy ingots, aluminum-boron alloy ingots, magnesium ingots and aluminum-titanium alloy ingots to make aluminum alloy liquid. An aluminum ingot with an aluminum content of 99.85% is used to ensure that the component content in the aluminum alloy liquid is consistent with the chemical composition of an ultra-high-strength aluminum alloy wire in claim 1. The temperature in the holding furnace was 725°C.
[0070] Stirring: Use an automatic stirrer to stir ...
Embodiment 3
[0086] The ultra-high-strength aluminum alloy wire of this embodiment includes the following components by weight percentage: Zn7.17%, Mg2.56%, Si1.0%, Cu1.72%, Fe0.6%, Ti0.02%, B0.1 %, the balance is Al.
[0087] The production process of the ultra-high-strength aluminum alloy wire of this embodiment includes the following steps:
[0088] S1: Melting: smelt aluminum ingots, inject them into the holding furnace, and then sequentially add zinc ingots, aluminum-copper alloy ingots, aluminum-iron alloy ingots, aluminum-silicon alloy ingots, aluminum-boron alloy ingots, magnesium ingots and aluminum-titanium alloy ingots to make aluminum alloy liquid. An aluminum ingot with an aluminum content of 99.85% is used to ensure that the component content in the aluminum alloy liquid is consistent with the chemical composition of an ultra-high-strength aluminum alloy wire in claim 1. The temperature in the holding furnace is 730°C.
[0089] Stirring: Use an automatic stirrer to stir the...
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