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Effect of Ultrasonic Melt-Treatment on the Eutectic Silicon and Iron Intermetallic Phases in Al-Si cast Alloys

机译:超声熔体处理对Al-Si铸造合金中共晶硅和铁金属间相的影响

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The ultrasonic melt treatment is highly efficient in controlling the size and morphology of the alpha-aluminum phase in the Al-Si cast alloys. However, the influence of this treatment on the other phases, namely: the eutectic Si and the Fe-intermetallic phases, has not been thoroughly investigated. This study was undertaken to investigate the effect of ultrasonic melt treatment on the morphology and size of these phases. Four Al-Si cast alloys, 384, 380, 356 and 356 (with 0.8% Fe), were considered in this study. The treatment temperatures were varied from about 100℃ above the liquidus temperatures down to the Al-Si eutectic temperature, for different treatment times (4 to 54 s). The results showed that the Si particles are only affected by the ultrasonic vibrations when the eutectic reaction takes place under the ultrasonic field, where more compacted and large Si particles are formed. This limited effect was observed only near to the ultrasonic horn. For other investigated conditions, including treatment in the liquid and semisolid states, the Si particles were obviously unaffected by the ultrasonic treatment. On the other hand, the iron intermetallic phases changed their morphology from large plate-like particles to a more compacted globular form, by the application of ultrasonic vibrations at temperatures up to 10℃ above liquidus. Treatments at higher temperatures have limited effect on the morphology of the Fe-intermetallic phases. These observations are general and apply to all the studied alloys.
机译:超声熔融处理在控制Al-Si铸造合金中的α-铝相的尺寸和形态方面非常有效。但是,该处理对其他相即共晶Si相和Fe-金属间相的影响尚未得到充分研究。进行这项研究以研究超声熔融处理对这些相的形态和尺寸的影响。本研究考虑了四种Al-Si铸造合金384、380、356和356(含0.8%的铁)。对于不同的处理时间(4到54 s),处理温度的变化范围是从液相线温度以上的约100℃到Al-Si共晶温度。结果表明,当在超声场下发生共晶反应时,Si颗粒仅受超声振动的影响,从而形成更致密的大Si颗粒。仅在超声喇叭附近观察到这种有限的作用。对于其他研究条件,包括在液态和半固态下的处理,Si颗粒显然不受超声波处理的影响。另一方面,通过在高于液相线10℃的温度下施加超声振动,铁金属间相将其形态从大的板状颗粒转变为更致密的球状形式。高温下的处理对铁-金属间相的形态影响有限。这些观察是普遍的,并适用于所有研究的合金。

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