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Formation of intermetallic phases in AlSi7Fel alloy processed under microgravity and forced fluid flow conditions and their influence on the permeability

机译:在微匍匐和强制流体流动条件下在苜蓿和强制流体流动条件下形成金属间相的形成及其对渗透性的影响

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Ternary Al-6.5wt.%Si-0.93wt.%Fe alloy samples were directionaily solidified on-board of the International Space Station ISS in the ESA payload Materials Science Laboratory (MSL) equipped with Low Gradient Furnace (LGF) under both purely diffusive and stimulated convective conditions induced by a rotating magnetic field. Using different analysis techniques the shape and distribution of the intermetallic phase p-Al5SiFe in the dendritic microstructure was investigated, to study the influence of solidification velocity and fluid flow on the size and spatial arrangement of intermetallics. Deep etching as well as 3-dimensional computer tomography measurements characterized the size and the shape of β-Al5SiFe platelets: Diffusive growth results in a rather homogeneous distribution of intermetallic phases, whereas forced flow promotes an increase in the amount and the size of β-Al5SiFe platelets in the centre region of the samples. The β-Al5SiFe intermetallics can form not only simple platelets, but also be curved, branched, crossed, interacting with dendrites and porosity located. This leads to formation of large and complex groups of Fe-rich intermetallics, which reduce the melt flow between dendrites leading to lower permeability of the mushy zone and might significantly decrease feeding ability in castings.
机译:三元al-6.5wt。%si-0.93wt。%Fe合金样品在ESA有效载物料科学实验室(MSL)中的国际空间站ISS的船上定向静电,在纯粹的扩散下的低梯度炉(LGF)旋转磁场引起的刺激的对流条件。使用不同的分析技术研究了树突式微观结构中金属间相P-Al5Sife的形状和分布,研究了凝固速度和流体流动对金属间金属间的尺寸和空间排列的影响。深度蚀刻以及三维计算机断层扫描测量表征β-Al5Sife血小板的尺寸和形状:扩散生长导致金属间相的相当均匀的分布,而强制流动促进β-β-尺寸的增加和尺寸Al5sife血小板在样品的中心区域。 β-Al5Sife金属间金属间可以形成简单的血小板,也可以形成弯曲,分支,交叉,与枝形和孔隙率相互作用。这导致形成大型和复杂的Fe富含Fe的金属间金属间金属化合物,这减少了枝晶之间的熔体流动,导致糊状区的渗透性较低,并且可能显着降低铸件中的饲养能力。

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