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铝硅合金凝固糊状区中泡沫硅的机械强度

The Mechanical Strength of Si Foams in the Mushy Zone during Solidification of Al-Si Alloys.

作者信息

Lim Jeon Taik, Youn Ji Won, Seo Seok Yong, Kim Ki Young, Kim Suk Jun

机构信息

School of Energy, Materials and Chemical Engineering, Korea University of Technology and Education (KOREATECH), Cheonan 31253, Korea.

出版信息

Materials (Basel). 2017 Mar 24;10(4):337. doi: 10.3390/ma10040337.

Abstract

The mechanical strength of an Al-30% Si alloy in the mushy zone was estimated by using a novel centrifugation apparatus. In the apparatus, the alloy melt was partially solidified, forming a porous structure made of primary Si platelets (Si foam) while cooling. Subsequently, pressure generated by centrifugal force pushed the liquid phase out of the foam. The estimated mechanical strength of the Si foam in the temperature range 850-993 K was very low (62 kPa to 81 kPa). This is about two orders of magnitude lower than the mechanical strength at room temperature as measured by compressive tests. When the centrifugal stress was higher than the mechanical strength of the foam, the foam fractured, and the primary Si crystallites were extracted along with the Al-rich melt. Therefore, to maximize the centrifugal separation efficiency of the Al-30% Si alloy, the centrifugal stress should be in the range of 62-81 kPa.

摘要

通过使用一种新型离心装置估算了糊状区Al-30%Si合金的机械强度。在该装置中,合金熔体部分凝固,在冷却时形成由初生硅片晶组成的多孔结构(硅泡沫)。随后,离心力产生的压力将液相从泡沫中挤出。在850-993K温度范围内估算的硅泡沫机械强度非常低(62kPa至81kPa)。这比通过压缩试验测得的室温下的机械强度低约两个数量级。当离心应力高于泡沫的机械强度时,泡沫破裂,初生硅微晶与富铝熔体一起被提取出来。因此,为了使Al-30%Si合金的离心分离效率最大化,离心应力应在62-81kPa范围内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6118/5507003/aaa50ed6979d/materials-10-00337-g001.jpg

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