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Effects of casting process on microstructures and flow stress behavior of Mg–9Gd–3Y–1.5Zn–0.8Zr semi-continuous casting billets

机译:铸造工艺对Mg-9Gd-3Y-1.5Zn-0.8Zr半连铸坯组织和流动应力行为的影响

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Mg–9Gd–3Y–1.5Zn–0.8Zr alloys own high strength, good heat and corrosion resistance. However, it is difficult for the fabrication of large-scale billets, due to the poor deformation ability and strong hot-crack tendency. This work investigated the casting process on the microstructures and flow stress behaviors of the semi-continuous casting billets for the fabrication of large-scale Mg–9Gd–3Y–1.5Zn–0.8Zr billets. The casting process (electromagnetic intensity and casting speed) shows outstanding effects on the microstructures and flow stress behavior of the billets. The billets with the specific casting process (I?=?68?A,V?=?65?mm/min) exhibit uniform microstructures and good deformation uniformity.
机译:Mg-9Gd-3Y-1.5Zn-0.8Zr合金具有高强度,良好的耐热性和耐腐蚀性。但是,由于变形能力差,热裂纹倾向强,因此难以制造大型坯料。这项工作研究了用于制造大型Mg–9Gd–3Y–1.5Zn–0.8Zr钢坯的半连续铸造钢坯的组织和流动应力行为。铸造工艺(电磁强度和铸造速度)对钢坯的组织和流动应力行为表现出显着影响。采用特定铸造工艺的铸坯(I 2≥68A,V 2≥65mm/ min)显示出均匀的组织和良好的变形均匀性。

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