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ORIENTATION RELATIONSHIPS OF PRECIPITATES WITH THE MATRLX IN AN ALUMINUM QUASICRYSTALLINE ALLOY

机译:用铝拟粘土合金与基质沉淀物的取向关系

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Aluminum quasicrystalline alloys present a novel class of high-strength alloys. They possess a high potential for practical applications in many fields. In this study, we used a quasicrystalline Al-alloy with a copper addition to achieving strengthening by heat treatment. The alloys were prepared by melt-spinning and by casting into a copper mold. In both cases, quasicrystals formed during solidification either as a primary phase or as a part of a quasicrystal-containing eutectic. Afterward, the samples were subjected to T5 heat treatment. The hardness of the melt-spun ribbons increased considerably while the hardness of the gravitationally cast samples did not change noticeably. A detailed investigation using transmission electron microscopy (TEM) showed that different types of precipitates can form. At lower temperatures, binary Al-Cu precipitates formed, in the intermediate region prevailed the quasicrystalline precipitates, while at higher temperatures formed T-precipitates (Al_(20)Mn_3Cu_2). Particular attention was given to determination of their orientation relationships with the Al-rich matrix.
机译:铝拟粘土合金呈现出一种新型的高强度合金。它们在许多领域具有很高的实际应用潜力。在这项研究中,我们使用了通过热处理实现加强的铜补充剂的拟晶al-合金。通过熔融纺丝制备合金,并通过浇铸到铜模具中制备。在这两种情况下,凝固过程中形成的拟亚晶体作为初级相或作为含有准含量的共晶的一部分。之后,对样品进行T5热处理。熔融纺丝丝带的硬度显着增加,而重力浇铸样品的硬度明显不会变化。使用透射电子显微镜(TEM)的详细研究表明,可以形成不同类型的沉淀物。在较低的温度下,形成的二元al-Cu沉淀物,在中间区域中占喹啉沉淀物,而在较高温度下形成T沉淀(Al_(20)Mn_3Cu_2)。特别注意确定与富含铝基矩阵的定向关系。

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