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Effect of ultrasonic treatment on the grain refinement and mechanical properties of AZ91 magnesium alloy

机译:超声处理对AZ91镁合金晶粒细化和力学性能的影响

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摘要

The present study examines the microstructural evolution and mechanical properties of AZ91 magnesium alloy solidified under high intensity ultrasonic treatment (UST). High intensity ultrasonic vibrations were introduced isothermally below the liquidus temperature into the solidifying AZ91 alloy for the refinement of primary α-Mg grains and β-Mg_17Al_12 intermetallic phase. Various microstructures were produced using different intensity of ultrasonic vibration at a constant temperature and fixed duration of UST. Without any ultrasonic treatment, the structure contains dendrites of primary α-Mg phase which are coarser and non-uniform in size. Nearly uniform, equiaxed grains with continuous and uniform network of intermetallic phase segregated along the grain boundaries were obtained in alloy subjected to high intensity ultrasonic vibration. The average grain size in this case decreased drastically from 300 μm for (without UST) to 17 μm (with UST at intensity of 4 kW/cm~2). Vickers hardness also increased steadily with increase in ultrasonic intensity. The mechanisms for microstructural refinement are discussed and it is concluded that the fine uniform grain structure achieved under ultrasonic vibrations is attributed to the cavitation and the acoustic flow induced by ultrasonic vibrations.
机译:本研究检查了在高强度超声处理(UST)下凝固的AZ91镁合金的组织演变和力学性能。在液相线温度以下等温地将高强度超声振动引入到凝固的AZ91合金中,以细化初级α-Mg晶粒和β-Mg_17Al_12金属间相。在恒定的温度和固定的UST持续时间下,使用不同强度的超声波振动产生了各种微结构。未经任何超声处理,该结构包含初级α-Mg相的树枝状晶体,这些树枝状晶体较粗且尺寸不均匀。在经受高强度超声振动的合金中,获得了沿晶粒边界偏析的具有连续且均匀的金属间相网络的近乎均匀的等轴晶粒。在这种情况下,平均晶粒尺寸从无UST的300μm急剧减小到17μm(UST在4 kW / cm〜2的强度下)。随着超声波强度的增加,维氏硬度也稳定增加。讨论了微观组织细化的机理,并得出结论,在超声振动下获得的细小均匀晶粒结构归因于空化和超声振动引起的声流。

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