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GRAIN REFINEMENT OF MAGNESIUM ALLOYS BY ULTRASONIC VIBRATION

机译:超声振动细化镁合金

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Cavitation by ultrasonic vibration has been shown to be able to alter the solidification process of a wide range of materials. The influence of ultrasonic vibration on the grain refinement of different magnesium materials has been studied using an ultrasonic system with a frequency of 20 kHz. Ingot samples of pure magnesium, AZ31 (Mg-3%Al-1%Zn), and AZ91 (Mg-9%Al-1%Zn) with a diameter of 70 mm were produced with and without ultrasonic treatment. The melt temperature used was 730°C and the sonicating time was 180 seconds. Substantial grain refinement was observed in all ingot samples cooled in a hot clay-graphite crucible under ultrasonic vibration. The average grain size of the 70 mm diameter ingot samples of AZ31 was found to decrease from about 2 mm to 150 μm or finer. Similar observations were made for AZ91. For pure magnesium, columnar grains (average length: 30 μm) were changed to nearly equiaxed grains (average grain size: 310 μm). The grain refinement mechanisms by ultrasonic vibration are discussed on the basis of the cavitation study established on water because of the similar densities and viscosities of water and molten magnesium.
机译:已经表明,通过超声振动进行的空化能够改变多种材料的固化过程。使用频率为20 kHz的超声系统研究了超声振动对不同镁材料晶粒细化的影响。在没有超声处理的情况下,生产了直径为70 mm的纯镁,AZ31(Mg-3%Al-1%Zn)和AZ91(Mg-9%Al-1%Zn)的铸锭样品。所使用的熔融温度为730℃,并且超声处理时间为180秒。在超声振动下,在热粘土-石墨坩埚中冷却的所有铸锭样品中均观察到明显的晶粒细化。发现AZ31的直径为70mm的铸锭样品的平均晶粒尺寸从约2mm减小至150μm或更细。对于AZ91也有类似的观察结果。对于纯镁,柱状晶粒(平均长度:30μm)变为近似等轴晶粒(平均晶粒尺寸:310μm)。由于水和熔融镁的密度和粘度相似,因此在水空化研究的基础上,讨论了通过超声振动进行晶粒细化的机理。

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