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Deformation Behavior and Precipitation Features in a Stretched Al–Cu Alloy at Intermediate Temperatures

机译:中温拉伸铝铜合金的变形行为和析出特征

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摘要

Deformation behavior and precipitation features of an Al–Cu alloy are investigated using uniaxial tensile tests at intermediate temperatures. It is found that the true stress drops with the decreased strain rate or the increased deformation temperature. The number of substructures and the degree of grain elongation decrease with the raised temperature or the decreased strain rate. At high temperatures or low strain rates, some dynamic recrystallized grains can be found. The type of precipitates is influenced by the heating process before hot tensile deformation. The content and size of precipitates increase during tensile deformation at intermediate temperatures. As the temperature increases over 200 °C, the precipitation process (Guinier Preston zone (G.P. zones)→θ′′ phase→θ′ phase) is enhanced, resulting in increased contents of θ′′ and θ′ phases. However, θ′′ and θ′ phases prefer to precipitate along the {020} direction, resulting in an uneven distribution of phases. Considering the flow softening degree and the excessive heterogeneous precipitation of θ′′ and θ′ phases during hot deformation, the reasonable strain rate and temperature are about 0.0003 s and 150 °C, respectively.
机译:使用中温下的单轴拉伸试验研究了Al-Cu合金的变形行为和析出特征。可以发现,真实应力随着应变率的降低或变形温度的升高而降低。随着温度的升高或应变率的降低,亚结构的数量和晶粒伸长的程度降低。在高温或低应变速率下,可以发现一些动态的重结晶晶粒。沉淀物的类型受热拉伸变形之前的加热过程影响。在中间温度下拉伸变形期间,沉淀物的含量和尺寸增加。当温度升高超过200°C时,析出过程(吉尼尔普雷斯顿区(G.P.区)→θ′相→θ′相)增强,导致θ′′和θ′相的含量增加。然而,θ'相和θ'相倾向于沿着{020}方向沉淀,导致相的不均匀分布。考虑到热变形过程中的流动软化程度和θ'和θ'相的过多非均相析出,合理的应变速率和温度分别约为0.0003 s和150°C。

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