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Influence of Cerium on Microstructure and Solidification of Eutectic Al-Si Piston Alloy

机译:铈对共晶Al-Si活塞合金的组织和凝固的影响

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摘要

Thermal analysis has become very important in foundry because it aids in studying the effect of additives on eutectic growth temperature and assessing the quality of modifications. This research was performed to investigate the influence of the addition of Ce (0.1-1.0wt.%) on the eutectic Al-Si-Cu-Mg alloy characteristics of solidification. Field emission scanning electron microscopy (FESEM) and optical microscopy were employed to characterize the alloy microstructure. The main phases studied were the Al-Cu (Al2Cu) and Al-Si phases. The addition of Ce decreased the nucleation and growth temperatures and acted as a refiner for the alloy. The larger amounts of Ce significantly impacted the Si structure: the average Si particle size decreased as the Ce concentration was increased, which led to a finer grain structure. The Ce formed intermetallic compounds with the alloyed elements that had plate- or needle-like structures and that interrupted the modification of Si. The solidification parameters, including the growth and nucleation temperatures, increased with increasing change in the morphology of the Al-Cu phase that were caused by Ce addition.
机译:热分析在铸造中已经变得非常重要,因为它有助于研究添加剂对共晶生长温度的影响并评估改性的质量。进行这项研究以研究添加Ce(0.1-1.0wt。%)对共晶Al-Si-Cu-Mg合金凝固特性的影响。场发射扫描电子显微镜(FESEM)和光学显微镜被用来表征合金的微观结构。研究的主要相为Al-Cu(Al2Cu)和Al-Si相。 Ce的添加降低了成核和生长温度,并充当了合金的细化剂。大量的Ce会显着影响Si结构:随着Ce浓度的增加,平均Si粒径会减小,从而导致晶粒结构更细。 Ce与具有板状或针状结构并中断Si的改性的合金元素形成金属间化合物。凝固参数,包括生长和成核温度,随添加铈引起的Al-Cu相形态的变化而增加。

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