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Influences of Y Additions on the Hot Tearing Susceptibility of Mg-1.5wt.Zn Alloys

机译:Y添加对Mg-1.5wt的热撕裂敏感性的影响。%Zn合金

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The influences of Y (0.2, 2 and 4 wt.%) additions on the hot tearing behaviour of Mg-1.5Zn alloys were investigated using a constrained rod casting (CRC) apparatus equipped with a load cell and data acquisition system. The initiation of hot tearing was monitored during CRC experiments. It corresponds to a drop in load on the hot tearing curves. The experimental results indicate that, the hot tearing susceptibility defined by the total crack volume, which was measured by the wax penetration method, decreases with increasing the content of Y at a mould temperature of 250 °C. The reduced susceptibility is attributed to the effect of Y on the solidification behaviour: it shortens the freezing range and reduces the grain size. The highest susceptibility is observed for Mg-1.5Zn-0.2Y alloy. It is caused by its coarse microstructure and relatively larger solidification range. In contrast, the lowest susceptibility is observed for Mg-1.5Zn-4Y alloy with a small equiaxed grain microstructure. In addition, the healing of hot cracks by the subsequent refilling of the remained liquid at the later stage of solidification is also beneficial for the alleviation of hot tearing susceptibility in Mg-1.5Zn-4Y alloy.
机译:使用配备有负载电池和数据采集系统的受约束杆铸造(CRC)装置研究了Y(0.2,2和4重量%)对Mg-1.5Zn合金的热撕裂行为的影响。在CRC实验期间监测热撕裂的启动。它对应于热撕裂曲线上的负荷下降。实验结果表明,通过蜡渗透法测量的热撕裂敏感性,随着蜡渗透法测量,随着250℃的模压温度的增加而降低。降低的易感性归因于y对凝固行为的影响:它缩短了冻结范围并降低了晶粒尺寸。对于Mg-1.5Zn-0.2Y合金,观察到最高敏感性。它是由其粗糙的微观结构和相对较大的凝固范围引起的。相反,对于具有小等式晶粒微观结构的Mg-1.5Zn-4Y合金,观察到最低敏感性。此外,在凝固后后续再填充残留液体的后续液体的热裂纹的愈合也是有益于减轻Mg-1.5zn-4Y合金中的热撕裂敏感性。

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