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首页> 外文期刊>Journal of Materials Science >Inoculation mechanism of rare earth Mg alloy in molten cast iron
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Inoculation mechanism of rare earth Mg alloy in molten cast iron

机译:铸铁中稀土镁合金的孕育机理

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The dissolution region of RE-Mg (RE = rare earth) alloy in the reaction chambers of in-mould inoculated castings was studied by scanning electron microscopy and on electron microprobe. The dissolution region of the inoculant was divided into 7 zones according to its microstructure. The RE-Mg alloy is composed of Mg2Si, a Mg2Si-Si eutectic, FeSi, RE-Mg-Si and other silicides. The dissolution of the alloy is a process in which the low melting point phases such as Mg2Si, a Mg2Si-Si eutectic and RE-Mg-Si dissolve first, and the high melting point phases such as FeSi and FeSi2 dissolve later. In addition, some intermediate products form during the dissolution process. This causes a concentration gradient of Mg and RE in the melt which results in a transition of the graphite morphology from normal spheroid to open nodule, vermicular and flake graphite. The dissolution of the FeSi phase in the melt forms local sites of high silicon concentration which promote the nucleation and growth of the graphite. (C) 1998 Chapman & Hall. [References: 12]
机译:通过扫描电子显微镜和电子探针研究了RE-Mg(RE =稀土)合金在模内接种铸件反应室内的溶解区域。接种剂的溶解区域根据其微观结构分为七个区域。 RE-Mg合金由Mg2Si,Mg2Si-Si共晶,FeSi,RE-Mg-Si和其他硅化物组成。合金的溶解是首先溶解低熔点相(例如Mg2Si,Mg2Si-Si共晶和RE-Mg-Si),然后溶解高熔点相(例如FeSi和FeSi2)的过程。另外,一些中间产物在溶解过程中形成。这会在熔体中引起Mg和RE的浓度梯度,从而导致石墨形态从正常球体转变为开孔结核,蠕虫状和片状石墨。 FeSi相在熔体中的溶解形成高硅浓度的局部位点,从而促进石墨的成核和生长。 (C)1998查普曼和霍尔。 [参考:12]

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