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In-situ observation of porosity formation during directional solidification of Al-Si casting alloys 被引量:2

In-situ observation of porosity formation during directional solidification of Al-Si casting alloys
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摘要 In-situ observation of porosity formation during directional solidification of two Al-Si alloys (7%Si and 13%Si) was made by using of micro-focus X-ray imaging.In both alloys,small spherical pores initially form in the melt far away from the eutectic solid-liquid (S/L) interface and then grow and coagulate during solidification.Some pores can float and escape from the solidifying melt front at a relatively high velocity.At the end of solidification,the remaining pores maintain spherical morphology in the near eutectic alloy but become irregular in the hypoeutectic alloy.This is attributed to different solidification modes and aluminum dendrite interactions between the two alloys.The mechanism of the porosity formation is briefly discussed in this paper. In-situ observation of porosity formation during directional solidification of two Al-Si alloys (7%Si and 13%Si) was made by using of micro-focus X-ray imaging.In both alloys,small spherical pores initially form in the melt far away from the eutectic solid-liquid (S/L) interface and then grow and coagulate during solidification.Some pores can float and escape from the solidifying melt front at a relatively high velocity.At the end of solidification,the remaining pores maintain spherical morphology in the near eutectic alloy but become irregular in the hypoeutectic alloy.This is attributed to different solidification modes and aluminum dendrite interactions between the two alloys.The mechanism of the porosity formation is briefly discussed in this paper.
出处 《China Foundry》 SCIE CAS 2011年第1期14-18,共5页 中国铸造(英文版)
基金 funded by the Natural Science Foundation of China under grant No:50771031 GM Research Funding under contract No:GM-RP-07-211
关键词 在原处观察 孔形成 扔合金的 Al-Si 微焦点的 X 光检查 方向性的团结 in-situ observation porosity formation Al-Si casting alloy micro-focus X-ray directional solidification
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