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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Real time observation on the solidification of strontium-modified zinc-aluminum-silicon alloys by synchrotron microradiography
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Real time observation on the solidification of strontium-modified zinc-aluminum-silicon alloys by synchrotron microradiography

机译:同步辐射显微照相实时观察锶改性的锌铝硅合金的凝固

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The effect of strontium on the solidification of zinc-aluminum-silicon alloys has been studied. The micro-structures of Zn-27%Al-3%Si alloys with different concentrations of strontium were investigated by optical microscope. The solidification processes of unmodified and strontium-modified Zn-27%Al-3%Si alloys were directly observed through the third generation Shanghai Synchrotron Radiation Facility. It was found that the nucleation of primary silicon reduced by additions of strontium, while the precipitation of eutectic silicon was promoted. Imaging experiment results showed that the precipitation temperature of primary silicon was greatly depressed (about 20 °C) while the precipitation temperature of α-Al increased (about 7 °C) by the addition of strontium. The suppressed nucleation resulted in an increased growth rate of primary silicon. The morphology of primary silicon crystals changed from a highly faceted to less faceted and more dendritic after modification, which might be caused by the higher growth rate, poisoning the layer growth mechanism and the Vertex-Linked of octahedral growth unit. Meanwhile, with the increase of cooling rate, the primary silicon became much more branched in the strontium-modified alloys. The needle-shaped eutectic silicon did not nucleate at the surface of the primary silicon in the unmodified alloys, but the coral-like eutectic silicon was found readily nucleating at the surface of primary silicon in the modified alloys due to the addition of strontium. After image processing, some eutectics were observed to nucleate overlapping with pre-existing a-Al or form in the remaining melt in the front of growth interface of α-Al after eutectic nucleating at the surface of the primary silicon.
机译:研究了锶对锌铝硅合金凝固的影响。用光学显微镜研究了不同锶含量的Zn-27%Al-3%Si合金的显微组织。通过第三代上海同步辐射装置可以直接观察到未改性和锶改性的Zn-27%Al-3%Si合金的凝固过程。发现通过添加锶减少了初生硅的成核,同时促进了共晶硅的沉淀。成像实验结果表明,加入锶使初生硅的析出温度大大降低(约20℃),而α-Al的析出温度升高(约7℃)。抑制的成核作用导致初级硅的生长速率增加。改性后,原始硅晶体的形态从高切面转变为少切面,且树枝状更多,这可能是由于较高的生长速率,中毒了层生长机理和八面体生长单元的顶点连接。同时,随着冷却速率的增加,锶改性合金中的原始硅变得更加分支。在未改性的合金中,针状共晶硅没有在原始硅的表面成核,但是由于添加了锶,珊瑚状的共晶硅很容易在改性合金的原始硅的表面成核。图像处理后,观察到一些共晶成核并与先前存在的a-Al重叠,或在初级硅表面共晶成核后在α-Al的生长界面前端的剩余熔体中形成。

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