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Roughening transition of decagonal quasi-crystal in undercooled Al_72Ni_12Co_16 alloy

机译:过冷Al_72Ni_12Co_16合金中十边形准晶体的粗化转变。

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High undercolling of the single-phase decagonal quasi-crystal alloy Al_72Ni_12Co_16 was achieved by cyclically superheating the melt in a containerless electromagnetic levitation apparatus. The maximum undercooling of the said material was up to 400 K. Transmission electron microscopy (TEM), scanning electron microscopy (SEM), and optical microscopy techniques were used to invesgiate the microstructure and identify the phase composition. The decagonal quasi-crystal phase in the samples with small undercoolings showed a facet morphology and grew in a laterial growth mode below the roughening transition undercooling point, ΔT=64 K. With increasing undercooling, the decagonal phase assumed an equiaxed structure and indicated a continuous growth pattern. Toner's surface dynamics model of growing three-dimensional quasi-crystal was adopted to explain the roughening phenomena in the undercooled melt.
机译:通过在无容器电磁悬浮装置中循环过热熔体,实现了单相十边形准晶体合金Al_72Ni_12Co_16的高度欠碰撞。所述材料的最大过冷度高达400K。使用透射电子显微镜(TEM),扫描电子显微镜(SEM)和光学显微镜技术研究微观结构并鉴定相组成。过冷度较小的样品中的十方准晶体相呈刻面形态,并在低于粗化转变过冷点ΔT= 64 K的条件下以横向生长模式生长。随着过冷度的增加,十方相呈现等轴结构,表明连续增长模式。采用碳粉生长三维准晶体的表面动力学模型来解释过冷熔体中的粗糙化现象。

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