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High Temperature Deformation of Twin-Roll Cast Al-Mn-Based Alloys after Equal Channel Angular Pressing

机译:等通道角挤压后双辊铸铝锰基合金的高温变形

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摘要

Twin roll cast Al-Mn- and Al-Mn-Zr-based alloys were subjected to four passes of equal channel angular pressing. The resulting grain size of 400 nm contributes to a significant strengthening at room temperature. This microstructure is not fully stable at elevated temperatures and recrystallization and vast grain growth occur at temperatures between 350 and 450 °C. The onset of these microstructure changes depends on chemical and phase composition. Better stability is observed in the Al-Mn-Zr-based alloy. High temperature tensile tests reveal that equal channel angular pressing results in a softening of all studied materials at high temperatures. This can be explained by an active role of grain boundaries in the deformation process. The maximum values of ductility and strain rate sensitivity parameter m found in the Al-Mn-Zr-based alloy are below the bottom limit of superplasticity (155%, m = 0.25). However, some features typical for superplastic behavior were observed—the strain rate dependence of the parameter m, the strengthening with increasing grain size, and the fracture by diffuse necking. Grain boundary sliding is believed to contribute partially to the overall strain in specimens where the grain size remained in the microcrystalline range.
机译:对双辊铸造的Al-Mn-和Al-Mn-Zr-基合金进行四道等通道角向压制。所得的400 nm晶粒尺寸有助于在室温下显着增强强度。这种微结构在升高的温度下并不完全稳定,在350至450°C的温度下会发生重结晶和大量晶粒生长。这些微结构变化的开始取决于化学和相组成。在Al-Mn-Zr基合金中观察到更好的稳定性。高温拉伸试验表明,等通道角挤压会导致所有研究材料在高温下软化。这可以通过晶界在变形过程中的积极作用来解释。在Al-Mn-Zr基合金中发现的延展性和应变率敏感性参数m的最大值低于超塑性的下限(155%,m = 0.25)。但是,观察到一些超塑性行为的典型特征-参数m的应变率依赖性,随晶粒尺寸增大的强化以及弥散颈缩引起的断裂。据信晶界滑动部分地影响了试样的总应变,在试样中晶粒尺寸保持在微晶范围内。

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