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Effect of RE on as-cast ageing process of Al-Si alloys

机译:稀土对铝硅合金铸态时效过程的影响

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摘要

The microstructure difference and enthalpy changes have been investigated by scanning electron microscopy (SEM) and differential scanning calorimetry (DSC) during the as-cast ageing process. After the as-cast ageing process, the eutectic silicon and oc-Al is in the ideal state for the alloy with 0.08 wt% mischmetal (MM) addition. The energy of the phase transformations is 5.8 J/g during the isothermal process, when Al-11%Si-0.27%Mg alloy is aged at 150°C. When the additive contents of MM are 0.03, 0.06, 0.08 and 0.1 wt%, respectively, the energies of phase transformations are 4.98, 1.39,1.07 and 1.25 J/g correspondingly. It is shown that the energies of phase transformations decrease gradually as the MM content increases from 0 wt% to 0.08 wt%; the energies then increase upon further addition of the MM concentration from 0.08 wt% to 0.1 wt% in the as-cast ageing process. Furthermore, the beginning time of phase transformations is delayed with the MM addition.
机译:在铸态时效过程中,通过扫描电子显微镜(SEM)和差示扫描量热法(DSC)研究了微观结构差异和焓变。经过铸态时效处理后,对于添加了0.08 wt%的混合稀土(MM)的合金,共晶硅和oc-Al处于理想状态。当Al-11%Si-0.27%Mg合金在150°C时效时,等温过程中的相变能量为5.8 J / g。当MM的添加剂含量分别为0.03、0.06、0.08和0.1wt%时,相变的能量分别为4.98、1.39、1.07和1.25J / g。结果表明,随着MM含量从0wt%增加到0.08wt%,相变能量逐渐减小。然后,在铸态时效过程中,随着MM浓度的进一步增加,能量从0.08 wt%增加到0.1 wt%。此外,相变的开始时间随着MM的添加而延迟。

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