A high-strength and heat-resistant low-scandium composite microalloyed al-cu alloy and its heat treatment process
A micro-alloying and al-cu technology, which is applied in the field of low-scandium composite micro-alloying Al-Cu alloy and its heat treatment process, can solve the problems of insufficient strength and so on
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Embodiment 1
[0020] A high-strength and heat-resistant low-scandium composite microalloyed Al-Cu alloy and its heat treatment process include the following steps: (1). Al-4.5Cu-0.15Sc-0.15Zr-0.03Er-0.15 is produced by conventional metal mold casting Ti-0.2Mn (in mass percent) alloy ingot casting, followed by primary homogenization of the ingot at 500°C for 4 hours, and secondary homogenization at 535°C for 12 hours, followed by quenching in cold water; ( 2). After aging the homogenized sample in step (1) for 3 hours at 155°C, the sample was gradually heated up at a rate of 5°C per hour. The final treatment temperature was 285°C, and the sample was taken out and cooled in air.
Embodiment 2
[0022] A high-strength and heat-resistant low-scandium composite microalloyed Al-Cu alloy and its heat treatment process include the following steps: (1). Al-3.2Cu-0.10Sc-0.12Zr-0.02Er-0.11 is produced by conventional metal mold casting Ti-0.15Mn (by mass percent) alloy ingot casting followed by primary homogenization at 500°C for 4 hours, secondary homogenization at 535°C for 12 hours, and 3 hours at 575°C The three-stage homogenization, followed by quenching in cold water; (2). After the sample that has been homogenized in step (1) is aged at 155 ° C for 3 hours, the sample is gradually heated at a heating rate of 5 ° C per hour, The final treatment temperature was 285°C, and the samples were taken out and cooled in air.
Embodiment 3
[0024] A high-strength and heat-resistant low-scandium composite microalloyed Al-Cu alloy and its heat treatment process include the following steps: (1). Al-2.8Cu-0.15Sc-0.15Zr-0.03Er-0.02 is produced by conventional metal mold casting Ti (in mass percent) alloy ingots followed by primary homogenization at 500°C for 4 hours, secondary homogenization at 535°C for 12 hours, and third stage homogenization at 575°C for 3 hours Homogenization, followed by quenching in cold water; (2). After aging for 3 hours at 175°C for the sample that has been homogenized in step (1), gradually increase the temperature of the sample at a rate of 5°C per hour, and the final treatment temperature at 300°C, take out the sample and cool it in air.
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