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ON THE MECHANISM OF GRAIN REFINEMENT BY ULTRASONIC MELT TREATMENT IN THE PRESENCE OF TRANSITION METALS

机译:超声波熔体处理在过渡金属存在下晶粒细化机理

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Ultrasonic melt treatment is known to induce grain refining in aluminum alloys. The degree of grain refinement is strongly linked to the stage of solidification when the treatment is applied and on the alloy composition. In the latter case the presence of grain refiners is important. In this paper it is shown that strong grain refining can be achieved in aluminum and its commercial alloys when the ultrasonic treatment is combined with the introduction of Zr and Ti. Ultrasonic processing is performed in the temperature range of the primary solidification of an intermetallic phase, i.e. normal casting temperatures of aluminum alloys. Dual mechanism is discussed involving (1) the dispersion and refinement of primary intermetallic particles that act as solidification sites and (2) growth restriction by the transition metal(s) that are present in the liquid phase.
机译:已知超声波熔体处理诱导铝合金晶粒精制。当施加处理和合金组合物上时,晶粒细化程度与凝固阶段强烈连接。在后一种情况下,晶粒炼油厂的存在很重要。本文示出了当超声波处理与Zr和Ti的引入结合时,可以在铝及其商业合金中实现强晶粒和其商业合金。超声波处理在金属间相的初级凝固的温度范围内进行,即铝合金的正常浇铸温度。讨论双重机制涉及(1)初级金属间颗粒的分散和改进,其用作液相中存在的过渡金属的凝固位点和(2)生长限制。

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