Häusler Ines, Schwarze Christian, Bilal Muhammad Umer, Ramirez Daniela Valencia, Hetaba Walid, Kamachali Reza Darvishi, Skrotzki Birgit
Federal Institute for Materials Research and Testing (BAM), Department 5: Materials Engineering, 12205 Berlin, Germany.
Interdisciplinary Centre for Advanced Materials Simulation (ICAMS), Ruhr-University Bochum, 44801 Bochum, Germany.
Materials (Basel). 2017 Jan 28;10(2):117. doi: 10.3390/ma10020117.
Experimental and phase field studies of age hardening response of a high purity Al-4Cu-1Li-0.25Mn-alloy (mass %) during isothermal aging are conducted. In the experiments, two hardening phases are identified: the tetragonal ' (Al₂Cu) phase and the hexagonal ₁ (Al₂CuLi) phase. Both are plate shaped and of nm size. They are analyzed with respect to the development of their size, number density and volume fraction during aging by applying different analysis techniques in TEM in combination with quantitative microstructural analysis. 3D phase-field simulations of formation and growth of ' phase are performed in which the full interfacial, chemical and elastic energy contributions are taken into account. 2D simulations of ₁ phase are also investigated using multi-component diffusion without elasticity. This is a first step toward a complex phase-field study of ₁ phase in the ternary alloy. The comparison between experimental and simulated data shows similar trends. The still unsaturated volume fraction indicates that the precipitates are in the growth stage and that the coarsening/ripening stage has not yet been reached.
对一种高纯度Al-4Cu-1Li-0.25Mn合金(质量分数)在等温时效过程中的时效硬化响应进行了实验和相场研究。在实验中,确定了两种硬化相:四方相‘ (Al₂Cu)相和六方相₁ (Al₂CuLi)相。两者均为板状且尺寸为纳米级。通过在透射电子显微镜(TEM)中应用不同分析技术并结合定量微观结构分析,对它们在时效过程中的尺寸、数量密度和体积分数的变化进行了分析。进行了‘ 相形成和生长的三维相场模拟,其中考虑了完整的界面能、化学能和弹性能贡献。还使用无弹性的多组分扩散研究了₁ 相的二维模拟。这是对三元合金中₁ 相进行复杂相场研究的第一步。实验数据与模拟数据的比较显示出相似的趋势。仍未饱和的体积分数表明析出物处于生长阶段,尚未达到粗化/成熟阶段。