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Formation of equiaxed crystal structures in directionally solidified Al-Si alloys using Nb-based heterogeneous nuclei

机译:使用Nb基异质核在定向凝固Al-Si合金中形成等轴晶体结构

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摘要

The design of chemical compositions containing potent nuclei for the enhancement of heterogeneous nucleation in aluminium, especially cast alloys such as Al-Si alloys, is a matter of importance in order to achieve homogeneous properties in castings with complex geometries. We identified that Al3Nb/NbB2 compounds are effective heterogeneous nuclei and are successfully produced in the form of Al-2Nb-xB (x = 0.5, 1 and 2) master alloys. Our study shows that the inoculation of Al-10Si braze alloy with these compounds effectively promotes the heterogeneous nucleation of primary α-Al crystals and reduces the undercooling needed for solidification to take place. Moreover, we present evidences that these Nb-based compounds prevent the growth of columnar crystals and permit to obtain, for the first time, fine and equiaxed crystals in directionally solidified Al-10Si braze alloy. As a consequence of the potent heterogeneous particles, the size of the α-Al crystals was found to be less dependent on the processing conditions, especially the thermal gradient. Finally, we also demonstrate that the enhanced nucleation leads to the refinement of secondary phases such as eutectic silicon and primary silicon particles.
机译:为了在具有复杂几何形状的铸件中实现均一的性能,设计用于增强铝(特别是铸造合金,如Al-Si合金)中非均相成核的有效核的化学组成的设计至关重要。我们确定Al3Nb / NbB2化合物是有效的异质核,并以Al-2Nb-xB(x = 0.5、1和2)中间合金的形式成功生产。我们的研究表明,用这些化合物接种Al-10Si钎焊合金可有效地促进初生α-Al晶体的异质成核,并减少发生固化所需的过冷。此外,我们提供的证据表明,这些基于Nb的化合物阻止了柱状晶体的生长,并首次允许在定向凝固的Al-10Si钎焊合金中获得细小且等轴的晶体。由于有效的异质颗粒,发现α-Al晶体的尺寸较少依赖于加工条件,特别是热梯度。最后,我们还证明了增强的形核作用可导致次生相的细化,例如共晶硅和初生硅颗粒。

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