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Effect of Ultrasonic Vibration on Microstructure of Mg-RE-Zn-Y Cast Alloys

机译:超声振动对Mg-Re-Zn-Y铸造合金微观结构的影响

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The Rare Earth (RE) containing Mg cast alloys have big potential to be used for heat-resistant applications, on condition that the RE-containing intermetallic compounds can be refined during the casting process. In this research, the effect of Ultrasonic Vibration (USV) with different powers on microstructure and mechanical properties of the semi-solid Mg-3RE-3Zn-0.7Y alloys has been investigated. The Mg alloy melt at temperature of 20-40 °C above the liquidus was exposed to USV for 90 s with different powers from 800W to 1200W, and the USV ended about 10°C below the liquidus. The results show that good semi-solid slurry with fine and spherical a-Mg particles could be obtained, and the primary a-Mg crystals are with average particle size of 55 urn and average shape coefficient of 0.63 after USV with 1000 W power. After USV treatment with the a power of 1000 W, the ultimate tensile strength and elongation of the casting samples were 25.2% and 93.5% higher than those of the samples without USV treatment respectively. It can be concluded that ultrasonic vibration is a good method to prepare semi-solid slurry of Mg alloy with fine and relatively round primary crystals due to cavitation and acoustic streaming effects.
机译:含有Mg铸造合金的稀土(RE)具有用于耐热应用的大潜力,因为在铸造过程中可以改进含有重新采集的金属间化合物的条件。在本研究中,研究了超声波振动(USV)对不同功率的微观结构和机械性能的影响,已经研究了半固体Mg-3R-3Zn-0.7Y合金的机械性能。在20-40℃的温度下液体熔融在液中暴露于USV的温度为90秒,从800W到1200W的不同功率,并且USV在液滴下调约10℃。结果表明,可以获得具有精细和球形A-Mg颗粒的良好的半固体浆料,并且初级A-Mg晶体具有55瓮的平均粒度和0.63的平均形状系数为0.63,具有1000W功率。在USV处理1000W的功率之后,铸件样品的极限拉伸强度和延伸性分别比样品的速度分别高出25.2%和93.5%,而没有USV处理。可以得出结论,超声波振动是一种良好的方法,用于制备由于空化和声学媒体效应而具有细小和相对圆形的初级晶体的Mg合金的半固体浆料。

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