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Comparative study of hot-processing maps for 6061 aluminium alloy constructed from power constitutive equation and hyperbolic sine constitutive equation

机译:基于功率本构方程和双曲正弦本构方程构造的6061铝合金热处理图的比较研究

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摘要

Two hot-processing maps were constructed from different constitutive equations using high temperature compression data to optimise hot-processing parameters for 6061 aluminium alloy. The results show that the flow behaviour of the alloy may be represented by a hyperbolic sine-type equation with deformation activation energy of 343.7 kJ mol~(-1). Dynamic recovery and dynamic recrystallisation concurrently proceeded during high temperature deformation of the alloy. The hot-processing map constructed from the hyperbolic sine constitutive equation is more suitable for optimising hot-processing parameters and for controlling the microstructure of the alloy. High deformation temperature and low strain rate favour the hot workability of the alloy. The optimum deformation condition for the alloy is 753 K/0.001 s~(-1). The instability domain occurs at lower deformation temperature than 653 K.
机译:使用高温压缩数据从不同的本构方程构建两个热加工图,以优化6061铝合金的热加工参数。结果表明,合金的流动行为可以用双曲正弦型方程表示,其变形激活能为343.7 kJ mol〜(-1)。在合金的高温变形过程中,动态恢复和动态再结晶同时进行。由双曲正弦本构方程构造的热加工图更适合于优化热加工参数和控制合金的微观结构。高变形温度和低应变速率有利于合金的热加工性。合金的最佳变形条件为753 K / 0.001 s〜(-1)。不稳定区域发生在低于653 K的变形温度下。

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