Thermodynamic analysis of liquid-solid state correlation of silumin under electric pulse
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摘要: 以液態合金的多相結構模型為基礎,對電脈沖作用下高硅鋁合金熔體結構變化進行了熱力學分析,并研究了電脈沖作用下Al-22%Si合金凝固組織的顯微硬度以及凝固相變點的變化.實驗結果表明,電脈沖促進了呈"膠體"狀態存在的Si粒子在Al-22%Si合金熔體中的分解,提高了熔體的均勻程度,部分消除了來自Si原料的遺傳性;電脈沖孕育處理提高了Al-22%Si合金熔體的過冷能力,增加了Si粒子在基體組織中的過飽和度,提高了基體的顯微硬度;Al-22%Si合金基體顯微硬度值的變化顯示熔體對于電脈沖頻率的響應比較敏感.Abstract: Based on the micro-multi-phase structure model of molten alloys, the thermodynamics of the Al-Si molten alloy structure under electric pulse was analyzed, and the changes in matrix micro-hardness and solidifying point of the Al-22% Si alloy under electric pulse were studied. It is shown that electric pulse promotes the decomposition of Si particles in colloidal state in the alloy melt, improves the homogeneous degree of the melt, and eliminates the heredity from raw material partially. Electric pulse modification increases the super cooling degree of the Al-22% Si alloy melt and enhances the supersaturated degree of Si particles in the matrix, thereby increases the micro-hardness of the matrix. The variation in micro-hardness of the alloy matrix indicates that the alloy melt structure was sensitive to the change in electric pulse frequency.
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Key words:
- silumin /
- electric pulse modification(EPM) /
- solidification microstructure /
- primary phase /
- cluster
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