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Influence of ultrasonic melt treatment on the formation of primary intermetallics and related grain refinement in aluminum alloys

机译:超声熔体处理对铝合金中初生金属间化合物的形成及相关晶粒细化的影响

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摘要

Ultrasonic melt treatment (UST) is known to induce grain refining in aluminum alloys. Previous studies have clearly shown that in Al–Zr–Ti alloys, the primary Al3Zr intermetallics were dramatically refined by cavitation-assisted fragmentation, and a good refinement effect was achieved. In this article, Al–Ti, Al–Ti–Zr alloys, and some commercial aluminum alloys are used to analyze the effect of UST on primary intermetallics and grain refinement. The addition of a small amount of Al–3Ti–B master alloy is also studied in order to compare with the addition of Ti and Zr in commercial aluminum alloys. Experimental results show that the ultrasonic grain refining effect is not only related to the size of particles which are refined and/or dispersed by UST, but also related to an undercooling available for activation of these particles in the solidification process. Athermal heterogeneous nucleation theory is considered to explain the effect of size and distribution of substrate particles on the grain structure with different undercoolings. The distribution of primary particle sizes results in the distribution of required undercoolings. Grain refining occurs when the undercooling is large enough to activate the refined primary intermetallics or dispersed inoculants.
机译:众所周知,超声波熔体处理(UST)可以诱导铝合金中的晶粒细化。先前的研究已经清楚地表明,在Al-Zr-Ti合金中,空化辅助破碎可以显着地精炼原始的Al3Zr金属间化合物,并获得了良好的精炼效果。在本文中,使用Al-Ti,Al-Ti-Zr合金和一些商用铝合金来分析UST对初级金属间化合物和晶粒细化的影响。为了与商用铝合金中添加Ti和Zr进行比较,还研究了添加少量的Al-3Ti-B中间合金。实验结果表明,超声晶粒细化效果不仅与通过UST细化和/或分散的颗粒尺寸有关,而且还与在固化过程中可用于激活这些颗粒的过冷有关。认为非热异质成核理论可以解释基质颗粒的尺寸和分布对过冷度对晶粒结构的影响。初级粒径的分布导致所需过冷度的分布。当过冷度足够大以激活精炼的初级金属间化合物或分散的孕育剂时,就会进行晶粒细化。

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