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Inhomogeneity of microstructure and mechanical properties of a 500 mm diameter heavy section semi-continuous cast AZ61 magnesium alloy ingot

机译:直径为500 mm的厚截面半连续铸造AZ61镁合金铸锭的组织和力学性能的不均匀性

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For the large magnesium alloy ingot, there is a considerable difference in cooling rate of different parts in the ingot, which leads to non-uniform distribution of the secondary phases, solute segregation and tensile properties. In the present research, an heavy AZ61 alloy ingot with a diameter of 500 mm was made by semi-continuous casting. The microstructure and mechanical properties at different positions along the radial direction of the large ingot were investigated by using an optical microscope (OM), a scanning electron microscope (SEM), an energy dispersive spectroscope (EDS), and a micro-hardness tester. The results indicate that the microstructure of the AZ61 ingot is non-uniform in different locations. It changes from equiaxed to columnar grains from the center to the edge; the average grain size gradually reduces from 1,005 μm to 763 μm, the secondary dendrite arm spacing reduces from 78 μm to 50 μm, and the Mg17(Al,Zn)12 phase is also refined. The micro-hardness value increases from 55.4 HV at the center to 72.5 HV at the edge of the ingot due to the microstructure differences, and the distribution of micro-hardness at the edge of the ingot is more uniform than that in the center. The tensile properties at room temperature show little difference from the center to the edge of the ingot except that the elongation at the edge is only 3.5%, much lower than that at other areas. The fracture mechanism is ductile fracture at the center and cleavage fracture at the edge of the ingot, and at the 1/2 radius of the ingot, a mixture of ductile and cleavage fracture is present.
机译:对于大型镁合金铸锭,铸锭中不同部位的冷却速度存在显着差异,这导致第二相的分布不均匀,溶质偏析和拉伸性能。在本研究中,通过半连续铸造制造了直径为500 mm的重质AZ61合金铸锭。通过使用光学显微镜(OM),扫描电子显微镜(SEM),能量色散光谱仪(EDS)和显微硬度测试仪研究了沿大铸锭径向不同位置的显微组织和力学性能。结果表明,AZ61铸锭的微观结构在不同位置是不均匀的。它从中心到边缘从等轴晶粒变为柱状晶粒。平均晶粒尺寸从1,005μm逐渐减小至763μm,次级枝晶臂间距从78μm减小至50μm,并且还精制了Mg17(Al,Zn)12相。由于显微组织的差异,显微硬度值从铸锭中心的55.4 HV增加到铸锭边缘的72.5 HV,铸锭边缘的显微硬度分布比在中心的分布更为均匀。室温下的拉伸性能从铸锭的中心到边缘几乎没有变化,只是边缘的伸长率仅为3.5%,远低于其他区域的伸长率。断裂机理是在锭的中心发生延性断裂,在锭的边缘发生解理断裂,并且在锭的1/2半径处,存在延性断裂和解理断裂的混合物。

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