首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure and metastable phase formation in a rapidly solidified Ni-Si eutectic alloy using a melt-spinning technique
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Microstructure and metastable phase formation in a rapidly solidified Ni-Si eutectic alloy using a melt-spinning technique

机译:使用熔体纺丝技术在快速凝固的Ni-Si共晶合金中的微观结构和亚稳态相形成

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In the Ni-Si system, the eutectic structure composed of Ni-Ni_3Si presents inherent thermal stability, allowing composite materials to be obtained with well-aligned and finely dispersed microstructures. The work reported here consisted of an investigation into the microstructure and morphology of such a eutectic alloy from the standpoint of its growth conditions. A Ni-Si eutectic alloy was processed by applying the directional solidification method at low growth rates and the rapid solidification technique using a melt-spinning process. The results indicate that samples processed under conditions close to equilibrium show a regular and aligned microstructure, while rapid solidification leads to an anomalous microstructure and the formation of a metastable phase.
机译:在Ni-Si系统中,由Ni-Ni_3Si组成的共晶结构具有固有的热稳定性,从而可以得到具有良好排列和精细分散的微结构的复合材料。从生长条件的观点出发,这里报道的工作包括对这种共晶合金的微观结构和形态的研究。通过采用低速定向凝固法和采用熔体纺丝法的快速凝固技术来处理Ni-Si共晶合金。结果表明,在接近平衡的条件下处理的样品显示出规则且对齐的微观结构,而快速凝固则导致异常的微观结构和亚稳相的形成。

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