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Hot Deformation Behavior of 2519 Al Alloy during Isothermal Compression

机译:2519铝合金等温压缩时的热变形行为

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The deformation behavior of 2519 aluminum alloy was studied by isothermal compression by Gleeble-1500 simulator in the temperature range from 300 to 450°C under the strain rates of 0.01~10s~(-1). The results showed that the flow stress was controlled by strain rate and deformation temperature. The flow stress increased with strain rate and decreased with deformation temperature. The flow stress of 2519 aluminum alloy increased with strain and to the constant values at three strain rates of 0.01 s~(-1),0.1 s~(-1) and 1 s~(-1) indicating the dynamic recovery to occur. The flow stress decreased after a peak value with increase of strain at strain rate 10s~(-1) and deformation temperature higher than 350°C, showing partly dynamic recrystallization. The flow stress of 2519 aluminum alloy during high temperature deformation can be represented by Zener-Hollomon parameter.
机译:在300〜450℃的温度范围内,以0.01〜10s〜(-1)的应变速率,通过Gleeble-1500模拟器等温压缩研究了2519铝合金的变形行为。结果表明,流变应力受应变速率和变形温度的控制。流变应力随应变率的增加而增加,随变形温度的降低而减小。 2519铝合金的流动应力在0.01 s〜(-1),0.1 s〜(-1)和1 s〜(-1)的三种应变速率下随应变而增加,并达到恒定值,表明发生了动态恢复。应变速率为10s〜(-1)且变形温度高于350°C时,随着应变的增加,流动应力在达到峰值后降低,表明存在部分动态再结晶。 2519铝合金在高温变形过程中的流动应力可用齐纳-所罗门参数表示。

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