首页> 外文期刊>Metallurgical and Materials Transactions A >Discussion of “Effect of Strontium and Phosphorus on Eutectic Al-Si Nucleation and Formation of β-Al5FeSi in Hypoeutectic Al-Si Foundry Alloys”*
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Discussion of “Effect of Strontium and Phosphorus on Eutectic Al-Si Nucleation and Formation of β-Al5FeSi in Hypoeutectic Al-Si Foundry Alloys”*

机译:讨论“锶和磷对次共晶Al-Si铸造合金中共晶Al-Si的形核和β-Al5 FeSi的形成” *

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摘要

The nucleation of Si during the solidification of Al-Si hypoeutectic alloys appears to result from a hierarchy of nucleating substrates operating at progressively lower temperatures: (1) AlP, whose generally particulate morphology can initiate the formation of compact Si particles as seen in hypereutectic alloys; (2) oxide bifilms alone, whose planar form creates platelike Si morphologies; and (3) a currently unknown nucleant that initiates the coral eutectic growth morphology. The consequential growth forms are particulate when initiated on particles and coarse (unmodified) plates when initiated on oxide films. However, when oxide films are deactivated by Sr, eutectic is forced to grow at a lower formation temperature with a consequently fine coral morphology known as “modified” Si. Increasing Sr additions progressively eliminate each substrate in turn to effect the change from the “unmodified” to the modified structure.
机译:Al-Si次共晶合金凝固过程中Si的成核似乎是由在较低温度下运行的成核基质的层级结构引起的:(1)AlP,其一般的颗粒形态可引发致密的Si颗粒的形成,如在过共晶合金中所见; (2)单独的氧化物双膜,其平面形式产生板状Si形态; (3)一种目前未知的核清洁剂,可启动珊瑚共晶生长形态。结果生长形式在颗粒上引发时为颗粒状,而在氧化膜上引发时为粗糙(未改性)板。但是,当氧化膜被Sr钝化时,共晶被迫在较低的地层温度下生长,因此形成了称为“改性” Si的精细珊瑚形态。增加Sr的添加量逐渐消除了每个基板,从而实现了从“未修饰”到修饰结构的改变。

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