首页> 外文会议>Pacific Rim International Congress on Advanced Materials and Processing >MAXIMIZING PERFORMANCE OF Al-Fe ALLOYS PROCESSED BY HIGH-PRESSURE TORSION WITH OPTIMIZED INITIAL MICROSTRUCTURE AND PROCESSING ROUTE
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MAXIMIZING PERFORMANCE OF Al-Fe ALLOYS PROCESSED BY HIGH-PRESSURE TORSION WITH OPTIMIZED INITIAL MICROSTRUCTURE AND PROCESSING ROUTE

机译:优化初始组织和加工路线,最大限度地提高高压扭转铝铁合金的性能

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The microstructure evolution of dilute Al-Fe alloys processed by High-Pressure Torsion (HPT) was studied in detail with special focus on the phase identification, phase distribution and orientation relationships between phases by high-resolution scanning/transmission electron microscopy (HR-S/TEM) and on structural analyses by X-ray diffraction (XRD). The alloys were characterized after HPT and subsequent aging treatments. Microstructures were well controlled for cast samples with 2wt%Fe containing a mixture of a-Al phase and eutectics of Al_3Fe and Al_6Fe. Supersaturation of Fe was achieved in the ultrafme-grained matrix, and successive aging led to a very fine dispersion of the intermetallic phases. The electrical conductivity after the aging treatments was significantly recovered to well over 50%IACS while simultaneously increasing the yield strength above 600 MPa via precipitation of dissolved Fe. These results show that even with low Fe fraction it is possible to improve mechanical and electrical properties of Al alloys for further advanced applications.
机译:采用高分辨率扫描/透射电子显微镜(HR-S/TEM)和X射线衍射(XRD)对高压扭转(HPT)处理的稀铝铁合金的微观结构演变进行了详细研究,重点研究了相识别、相分布和相之间的取向关系。合金经过HPT和后续时效处理后进行了表征。对于含2wt%Fe的铸造样品,其显微组织得到了很好的控制,其中含有a-Al相以及Al_3Fe和Al_6Fe共晶的混合物。铁在超细晶粒基体中实现过饱和,连续时效导致金属间相非常精细的分散。老化处理后的导电率显著恢复到远远超过50%的IACS,同时通过溶解铁的沉淀将屈服强度提高到600 MPa以上。这些结果表明,即使在铁含量较低的情况下,仍有可能改善铝合金的机械和电气性能,用于进一步的高级应用。

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