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Hot Deformation Behavior of a New Al–Mn–Sc Alloy

机译:新型Al-Mn-Sc合金的热变形行为

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摘要

The hot deformation behavior of a new Al–Mn–Sc alloy was investigated by hot compression conducted at temperatures from 330 to 490 °C and strain rates from 0.01 to 10 s . The hot deformation behavior and microstructure of the alloy were significantly affected by the deformation temperatures and strain rates. The peak flow stress decreased with increasing deformation temperatures and decreasing strain rates. According to the hot deformation behavior, the constitutive equation was established to describe the steady flow stress, and a hot processing map at 0.4 strain was obtained based on the dynamic material model and the Prasad instability standard, which can be used to evaluate the hot workability of the alloy. The developed hot processing diagram showed that the instability was more likely to occur in the higher Zener–Hollomon parameter region, and the optimal processing range was determined as 420–475 °C and 0.01–0.022 s , in which a stable flow and a higher power dissipation were achieved.
机译:通过在330至490°C的温度和0.01至10 s的应变速率下进行热压缩,研究了新型Al–Mn–Sc合金的热变形行为。变形温度和应变速率显着影响合金的热变形行为和显微组织。峰值流动应力随着变形温度的升高和应变率的降低而降低。根据热变形行为,建立了描述稳态流动的本构方程,并基于动态材料模型和Prasad失稳标准,获得了0.4应变下的热加工图,可用于评价热加工性能。合金。发达的热加工图表明,较高的Zener-Hollomon参数区域更可能出现不稳定性,确定的最佳加工范围为420–475°C和0.01–0.022 s,其中稳定的流动和更高的功耗得以实现。

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