材料科学
变形(气象学)
流动应力
金属间化合物
应变率
冶金
体积分数
微观结构
大气温度范围
压缩(物理)
热加工
复合材料
热力学
合金
物理
作者
М. Г. Хомутов,С. М. Амер,R. Yu. Barkov,М. В. Главатских,A. Yu. Churyumov,А. В. Поздняков
出处
期刊:Metals
[Multidisciplinary Digital Publishing Institute]
日期:2021-09-24
卷期号:11 (10): 1521-1521
被引量:5
摘要
The compression tests in a temperature range of 400–540 °C and strain rates of 0.1–15 s−1 were applied to novel Al-Cu-Y(Er)-Mg-Mn-Zr alloys to investigate their hot deformation behavior. The higher volume fraction of the intermetallic particles with a size of 0.5–4 µm in the alloys caused an increase in flow stress. Hyperbolic sine law constitutive models were constructed for the hot deformation behavior of Al-Cu-Y(Er)-Mg-Mn-Zr alloys. Effective activation energy has a higher value in the alloys with Er than in the alloys with Y. According to the processing maps, the temperature range of 420–480 °C and strain rates higher than 5 s−1 are the most unfavorable region for hot deformation for the investigated alloys. The deformation at 440 °C and 15 s−1 led to cracks on the surface of the sample. However, internal cracks were not observed in the microstructure after deformation. The optimum hot deformation temperatures were in a range of 500–540 °C and at strain rates of 0.1–15 s−1.
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