首页> 外文会议>International Conference on Aluminum Alloys >ROLE OF SOLUTE AND TRANSITION METALS IN GRAIN REFINEMENT OF ALUMINUM ALLOYS UNDER ULTRASONIC MELT TREATMENT
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ROLE OF SOLUTE AND TRANSITION METALS IN GRAIN REFINEMENT OF ALUMINUM ALLOYS UNDER ULTRASONIC MELT TREATMENT

机译:超声熔体处理下铝合金晶粒细化溶质和过渡金属的作用

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It is well known that several factors affect the as-cast microstructure through influencing either nucleation or growth during solidification. The effect of solute elements on grain refinement, which can be quantified by the growth restriction parameter Q, is of great importance for controlling the as-cast grain size in aluminum alloy. On the other hand, the ultrasonic melt treatment (UST) is one of potent grain refining methods in aluminum alloy. Our previous results showed that ultrasonic melt treatment results in a significant grain refining effect in an aluminum alloy when transition metals, such as Ti and Zr, are present in the melt. It was suggested that UST may increase the nucleating potency of Al_3(Zr, Ti) intermetallics. In this paper, the growth restriction effect caused by segregating elements is considered in order to further study the efficiency and potency of grain refiner particles caused by ultrasonic treatment. The results show that the main effect of transition metals Zr and Ti is related to the maximum number of particles which are active nucleants under UST. With increasing Zr, the maximum number of potent particles increases, which produces a better grain refining effect.
机译:众所周知,几种因素通过影响凝固过程中的成核或生长来影响铸造微观结构。溶质元素对晶粒细化的影响,可以通过生长限制参数Q量化,这对于控制铝合金中的铸粒尺寸非常重要。另一方面,超声波熔体处理(UST)是铝合金中有效的晶粒精制方法之一。我们以前的结果表明,当过渡金属如Ti和Zr存在于熔体时,超声波熔体处理导致铝合金中的显着晶粒精炼效果。有人建议,UST可能增加AL_3(ZR,TI)金属间质的核性效力。在本文中,考虑了由分离元素引起的生长限制效应,以进一步研究超声波处理引起的晶粒纤维粒子的效率和效力。结果表明,过渡金属Zr和Ti的主要效果与UST下方有效核肉的最大颗粒数有关。随着Zr的增加,最大颗粒的最大数量增加,产生更好的晶粒精制效果。

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