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首页> 外文期刊>Physics of the solid state >Kinetics of Silicon Precipitation in a Directionally Crystallized Binary Aluminum-Silicon Alloy
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Kinetics of Silicon Precipitation in a Directionally Crystallized Binary Aluminum-Silicon Alloy

机译:定向结晶二元铝硅合金中硅沉淀的动力学

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摘要

The precipitation of silicon atoms in aluminum in an Al-Si alloy has been studied using differential scanning calorimetry. The alloys containing 8, 13, and 15 wt % silicon were obtained by directional solidification of a ribbon pulled from the melt through a shaper by the Stepanov method at a rate of about 103 μm/s. From the characteristics of the exothermic effects observed in the temperature range 430-650 K, it has been found that the precipitation process leading to the formation of the Guinier-Preston zones occurs with the effective activation energy of 75 kJ/mol, and its intensity decreases with increasing silicon content in the alloy from 8 wt % to the eutectic content. The effect correlates with a decrease in the volume fraction of dendrites of the primary α-Al crystals in the alloy. It can be assumed that the precipitation occurs in the dendrite primary crystals of the solid solution. Based on this assumption, it has been concluded that, during directional solidification of an aluminum-silicon alloy at a rate of 10~3 μm/s, the metastable solid solution of silicon in aluminum, in which silicon atoms of the metallic lattice are transformed into clusters with covalent bonding forces, is formed during the dendrite growth of the primary crystals.
机译:已经使用差示扫描量热法研究了铝-硅合金中铝中硅原子的沉淀。通过使用Stepanov方法以约103μm/ s的速度通过成形机从熔体中拉出的薄带定向凝固,从而获得包含8、13和15wt%的硅的合金。根据在430-650 K温度范围内观察到的放热效应的特征,发现导致Guinier-Preston区形成的沉淀过程以75 kJ / mol的有效活化能及其强度发生。随着合金中硅含量从8 wt%增加到低共熔含量,碳含量降低。该效应与合金中初生α-Al晶体的树枝状晶体的体积分数的减少有关。可以假定沉淀发生在固溶体的树枝状初晶中。基于该假设,可以得出结论,在铝硅合金以10〜3μm/ s的速度定向凝固期间,硅在铝中的亚稳态固溶体中金属晶格的硅原子发生了转变。在初生晶体的枝晶生长过程中形成具有共价键合力的簇。

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