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Microstructure characterization of 7050 aluminum alloy during dynamic recrystallization and dynamic recovery

机译:动态再结晶和动态恢复过程中7050铝合金的组织特征

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摘要

Dynamic recrystallization and dynamic recovery in 7050 aluminum alloy during high temperature deformation have been investigated by tensile tests conducted at 460 deg C and strain rates of l.0 x l0~(-2) and 0.1 s~(-1). It is shown that continuous dynamic recrystallization and dynamic recovery are the softening mechanisms when strain rates are 1.0 x l0~(-2) and 0.1 s~(-1), respectively. The increase in the average misorientation angle is proportional to the increase in the true strain during continuous recrystallization and dynamic recovery. The grain size of the 7050 aluminum alloy increases with increasing true strain during continuous dynamic recrystallization and dynamic recovery, while the aspect ratio of grains remains unchanged after the continuous dynamic recrystallization; and it increases with the true strain during dynamic recovery. The continuous increase of the average misorientation angle during continuous dynamic recrystallization is attributed to the migration of subgrain boundaries and the absorption of dislocations into grain boundaries.
机译:通过在460℃下进行的拉伸试验以及应变率为l.0×l0〜(-2)和0.1s〜(-1),研究了7050铝合金在高温变形过程中的动态再结晶和动态恢复。结果表明,当应变速率分别为1.0×l0〜(-2)和0.1s〜(-1)时,连续动态再结晶和动态恢复是软化机理。平均取向差角的增加与连续重结晶和动态恢复过程中真实应变的增加成比例。在连续动态再结晶和动态恢复过程中,7050铝合金的晶粒尺寸随真实应变的增加而增加,而连续动态再结晶后晶粒的长径比保持不变。在动态恢复过程中,它会随着真实应变而增加。连续动态再结晶过程中平均取向差角的连续增加归因于亚晶界的迁移和位错吸收到晶界中。

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