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Microstructure Control in A356 Al-Si Alloy Via Ultrasonic Melt Treatment

机译:超声熔体处理控制A356 Al-Si合金的组织

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Ultrasonic treatment was conducted to study its effect on the size and morphology of the α-Al phase of the A356 Al-Si-Mg alloy. Treatments were carried out in the temperature range from 700 to 614 ℃, i.e. from above the liquidus temperature (619 ℃) to semisolid temperatures. The treatment times varied from 15 to 180 s. The results showed that ultrasonic treatment could control the alloy microstructure when applied in the liquid or semisolid states, and was most efficient when applied at a few degrees above the liquidus temperature, e.g., 620 ℃, where globule size of 57 μm and roundness between 0.62 and 0.70 were obtained. Ultrasonic treatment times in the order of 15-30 s were sufficient to dramatically refine the size and alter the morphology of the α-Al phase. The refining effect observed in samples treated in semisolid state was due to solid fragmentation and dispersion, while in the liquid state, refining occurred most likely as a result of activation of non-equilibrium nucleation events which was confirmed from experimental simulations performed using succinonitrile polymer.
机译:进行超声波处理以研究其对A356 Al-Si-Mg合金的α-Al相的尺寸和形态的影响。在700至614℃的温度范围内进行处理,即从液相线温度(619℃)以上至半固态温度。处理时间从15到180 s不等。结果表明,在液态或半固态状态下进行超声处理可以控制合金的显微组织,在液相线温度以上(例如620℃)的几个角度下(球形度为57μm,圆度为0.62)时,超声波处理最为有效。得到0.70。超声处理时间在15到30 s左右,足以显着改善尺寸并改变α-Al相的形态。在半固态处理的样品中观察到的精制效果是由于固体碎裂和分散,而在液态下,由于非平衡成核作用的激活,最有可能发生精制,这是通过使用丁二腈聚合物进行的实验模拟证实的。

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