Ta Na, Bilal Muhammad Umer, Häusler Ines, Saxena Alaukik, Lin Yueh-Yu, Schleifer Felix, Fleck Michael, Glatzel Uwe, Skrotzki Birgit, Darvishi Kamachali Reza
Max-Planck-Institut für Eisenforschung GmbH, Max-Planck-Straße 1, 40237 Düsseldorf, Germany.
School of Material Science and Engineering, University of Science & Technology Beijing, Beijing 100083, China.
Materials (Basel). 2021 Mar 8;14(5):1280. doi: 10.3390/ma14051280.
The effects of anisotropic interfacial properties and heterogeneous elasticity on the growth and ripening of plate-like θ'-phase (AlCu) in Al-1.69 at.% Cu alloy are studied. Multi-phase-field simulations are conducted and discussed in comparison with aging experiments. The precipitate/matrix interface is considered to be anisotropic in terms of its energy and mobility. We find that the additional incorporation of an anisotropic interfacial mobility in conjunction with the elastic anisotropy result in substantially larger aspect ratios of the precipitates closer to the experimental observations. The anisotropy of the interfacial energy shows comparably small effect on the precipitate's aspect ratio but changes the interface's shape at the rim. The effect of the chemo-mechanical coupling, i.e., the composition dependence of the elastic constants, is studied as well. We show that the inverse ripening phenomenon, recently evidenced for δ' precipitates in Al-Li alloys (Park et al. Sci. Rep. 2019, 9, 3981), does not establish for the θ' precipitates. This is because of the anisotropic stress fields built around the θ' precipitates, stemming from the precipitate's shape and the interaction among different variants of the θ' precipitate, that disturb the chemo-mechanical effects. These results show that the chemo-mechanical effects on the precipitation ripening strongly depend on the degree of sphericity and elastic isotropy of the precipitate and matrix phases.
研究了各向异性界面性质和非均匀弹性对Al-1.69 at.% Cu合金中板状θ'-相(AlCu)生长和熟化的影响。进行了多相场模拟,并与时效实验进行了比较和讨论。沉淀相/基体界面在能量和迁移率方面被认为是各向异性的。我们发现,各向异性界面迁移率与弹性各向异性的额外结合,使得沉淀相的纵横比显著增大,更接近实验观测结果。界面能的各向异性对沉淀相的纵横比影响相对较小,但会改变边缘处界面的形状。同时也研究了化学-机械耦合效应,即弹性常数对成分的依赖性。我们表明,最近在Al-Li合金的δ'沉淀相中发现的逆熟化现象(Park等人,《科学报告》,2019年,9卷,3981页),在θ'沉淀相中并不成立。这是因为θ'沉淀相周围形成的各向异性应力场,源于沉淀相的形状以及θ'沉淀相不同变体之间的相互作用,干扰了化学-机械效应。这些结果表明,化学-机械效应在沉淀熟化过程中强烈依赖于沉淀相和基体相的球形度和弹性各向同性程度。