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Microstructural evolution and dynamic softening mechanisms of Al-Zn-Mg-Cu alloy during hot compressive deformation

机译:Al-Zn-Mg-Cu合金热压缩变形过程中的组织演变及动态软化机理

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摘要

The hot deformation behavior and microstructural evolution of an Al-Zn-Mg-Cu (7150) alloy was studied during hot compression at various temperatures (300 to 450 °C) and strain rates (0.001 to 10 s−1). A decline ratio map of flow stresses was proposed and divided into five deformation domains, in which the flow stress behavior was correlated with different microstructures and dynamic softening mechanisms. The results reveal that the dynamic recovery is the sole softening mechanism at temperatures of 300 to 400 °C with various strain rates and at temperatures of 400 to 450 °C with strain rates between 1 and 10 s−1. The level of dynamic recovery increases with increasing temperature and with decreasing strain rate. At the high deformation temperature of 450 °C with strain rates of 0.001 to 0.1 s−1, a partially recrystallized microstructure was observed, and the dynamic recrystallization (DRX) provided an alternative softening mechanism. Two kinds of DRX might operate at the high temperature, in which discontinuous dynamic recrystallization was involved at higher strain rates and continuous dynamic recrystallization was implied at lower strain rates.
机译:研究了Al-Zn-Mg-Cu(7150)合金在各种温度(300至450°C)和应变速率(0.001至10 s-1)的热压缩过程中的热变形行为和微观组织演变。提出了流动应力下降比图,并将其划分为五个变形域,其中流动应力行为与不同的微观结构和动态软化机制相关。结果表明,动态恢复是在300至400°C的温度下具有不同应变速率的唯一软化机制,以及在400至450°C的温度下在1至10 s-1之间的应变速率的唯一软化机制。动态恢复水平随温度升高和应变率降低而增加。在450摄氏度的高变形温度下,应变速率为0.001至0.1 s-1,观察到部分重结晶的微观结构,动态重结晶(DRX)提供了另一种软化机制。两种DRX可能在高温下运行,其中较高的应变速率涉及不连续的动态重结晶,而较低的应变速率意味着连续的动态重结晶。

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