Sanchez Jon Mikel, Arribas Maribel, Galarraga Haize, Garcia de Cortazar Maider, Ellero Marco, Girot Franck
TECNALIA, Basque Research and Technology Alliance (BRTA), Astondo Bidea E-700, 48160, Derio, Spain.
Basque Center for Applied Mathematics, Alameda de Mazarredo 14, 48400, Bilbao, Spain.
Heliyon. 2023 Jan 21;9(2):e13005. doi: 10.1016/j.heliyon.2023.e13005. eCollection 2023 Feb.
The use of secondary aluminum alloys in industry is still limited by the high Fe contents in recycled alloys. In general, the Fe-rich intermetallic compounds deteriorate the performance of secondary Al-Si alloys, specially the β-Fe phase. To mitigate the detrimental effects of iron, the influence of diferent cooling rates and holding temperatures on the modification and purification of iron-rich compounds in commercial AlSi10MnMg alloy with 1.1 wt % Fe was studied. According to the results obtained by CALPHAD calculations, the alloy was modified by adding a 0.7 wt%, 1.2 wt%. and 2.0 wt% of Mn. The phase formation and morphology of iron-rich compounds was systematically studied and correlated by different microstructural characterization techniques. The experimental results showed that the detrimental β-Fe phase can be avoided by adding at least 1.2 wt % of Mn at the studied cooling rates. Finally, the effect of different holding temperatures in the sedimentation of Fe-rich compounds also was studied. Hence, the gravitational sedimentation experiments at different holding times and temperatures were conducted to validate the feasibility of the methodology in different processing conditions. The experimental results showed a high Fe removal efficiency up to 64% and 61%, after a holding time of 30 min at 600 °C and 670 °C, respectively. The addition of Mn improved the Fe removal efficiency but not gradually, as the best results were obtained in the alloy containing 1.2 wt % Mn.
工业中二次铝合金的使用仍受到再生合金中铁含量过高的限制。一般来说,富铁金属间化合物会降低二次铝硅合金的性能,特别是β-Fe相。为了减轻铁的有害影响,研究了不同冷却速率和保温温度对含1.1 wt%铁的商用AlSi10MnMg合金中富铁化合物的变质和提纯的影响。根据CALPHAD计算结果,通过添加0.7 wt%、1.2 wt%和2.0 wt%的锰对合金进行变质处理。采用不同的微观结构表征技术系统地研究并关联了富铁化合物的相形成和形态。实验结果表明,在所研究的冷却速率下,添加至少1.2 wt%的锰可以避免有害的β-Fe相。最后,还研究了不同保温温度对富铁化合物沉降的影响。因此,进行了不同保温时间和温度下的重力沉降实验,以验证该方法在不同加工条件下的可行性。实验结果表明,在600℃和670℃分别保温30分钟后,铁的去除效率高达64%和61%。添加锰提高了铁的去除效率,但不是逐渐提高,含1.2 wt%锰的合金获得了最佳结果。