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Understanding texture domains and relations between pre-eutectic and eutectic phase during Al-Si alloy solidification

机译:了解Al-Si合金凝固过程中的织构域和共晶相与共晶相之间的关系

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摘要

Phase morphology and crystallographic texture are important components of a solidification microstructure. Probability of nucleation of a nucleus is a strong function of local chemical & thermal conditions and its atomic orientation. Similarly, the growth kinetics for various crystal planes is dependent on its crystal orientation apart from local environmental conditions. The combined effects of nucleation & growth kinetics along with solidification conditions dictate the resulting microstructure of an alloy. In this study, various phases of a near eutectic Al-Si alloy are examined by serial sectioning and 3D reconstruction. A peculiar microstructure is observed in which primary silicon is present in the immediate proximity of primary aluminum. Observations through electron back scatter diffraction show that the microtexture of primary and eutectic Si is similar (with in a twin relation) and thus it is concluded that the formation of eutectic starts with eutectic Si forming on the primary Si.
机译:相形态和晶体织构是凝固微观结构的重要组成部分。原子核成核的可能性是局部化学和热条件及其原子取向的强大函数。同样,除了局部环境条件外,各种晶面的生长动力学还取决于其晶向。成核和生长动力学以及凝固条件的共同作用决定了合金的最终微观结构。在这项研究中,通过连续切片和3D重建检查了近共晶Al-Si合金的各个相。观察到特殊的微观结构,其中原生硅紧邻原生铝存在。通过电子背散射衍射的观察表明,初生和共晶硅的微观结构相似(具有孪生关系),因此可以得出结论,共晶的形成始于在初生Si上形成共晶Si。

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