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Effect of Yttrium on Hot Tearing Susceptibility of Mg-6Zn-1Cu-0.6Zr Alloys

机译:钇对Mg-6ZN-1Cu-0.6Zr合金热撕裂敏感性的影响

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摘要

The effect of Yttrium (Y) addition on hot tearing susceptibility of Mg-6Zn-1Cu-xY-0.6Zr (x = 0, 1, 2, 3) alloys was investigated using a constrained rod casting apparatus which monitored the hot tearing formation with a load sensor and a data acquisition system. The solidification characterization of the investigated alloys was studied through thermal analysis. The thermal analysis results revealed that as-cast Mg-6Zn-1Cu-xY-0.6Zr alloys are composed of primary alpha-Mg dendrites and several types of second phases, MgZnCu, MgZn2, Mg3YZn6 and/or Mg3Y2Zn3. The hot tearing susceptibility is affected by the addition of Y content that significantly decreases the hot tearing susceptibility of Mg-6Zn-1Cu-xY-0.6Zr alloys due to the grain refinement and high feeding capacity. In addition, the analysis of microstructures and fracture surfaces indicated that liquid film theory and feeding theory are mainly dominant on the hot tearing mechanisms.
机译:使用受约束的杆铸造装置研究了钇(Y)添加对Mg-6zN-1Cu-XY-0.6ZR(X = 0,1,2,3)合金的热撕裂敏感性的影响,该杆铸造装置监测热撕裂形成 负载传感器和数据采集系统。 通过热分析研究了研究合金的凝固表征。 热分析结果显示,由于铸造Mg-6zN-1Cu-XY-0.6 Zr合金由初级α-Mg树枝状和几种类型的第二阶段,MgZNCU,MgZN2,Mg3YZN6和/或Mg3毫2 Zn3组成。 热撕裂易感性受到Y含量的影响,由于晶粒细化和高进料能力,显着降低Mg-6Zn-1Cu-XY-0.6ZR合金的热撕裂敏感性。 此外,微观结构和裂缝表面的分析表明,液体膜理论和饲养理论主要占据热撕裂机制。

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