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Effect of two-liquid casting on the microstructure of Sn-Pb alloys

机译:两液铸造对Sn-Pb合金显微组织的影响

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Traditional casting usually solidifies one homogeneous liquid by removing heat from liquid surface, by which the microstructure solely depends on the heat removal rate for the given alloy composition. The newly developed two-liquid composite simultaneous casting concept raises an alternative to control microstructure. The concept introduces the solidification while mixing technique so that the microstructure depends not only on the heat-removing from liquid surface but also the heat transfer from one liquid to another. The paper reports the experimental validation of the concept by two-liquid casting of Sn-Pb alloys. Reduced grain size, increased microhardness, rougher and more fractal grain surfaces are observed for the alloy solidified by two-liquid casting in comparison of the microstructure obtained by conventional solidification techniques.
机译:传统的铸造通常通过从液体表面去除热量来固化一种均质的液体,通过这种方法,微观结构仅取决于给定合金成分的除热速率。新开发的两液复合同时铸造概念提出了控制微观组织的替代方法。该概念引入了边搅拌边固化的技术,因此其微观结构不仅取决于从液体表面排出的热量,而且还取决于从一种液体到另一种液体的热传递。本文报道了通过两液铸造Sn-Pb合金对该概念进行的实验验证。与通过常规凝固技术获得的显微组织相比,通过二液铸造凝固的合金观察到减小的晶粒尺寸,增加的显微硬度,更粗糙和更多的分形的晶粒表面。

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