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A Study of Second-Phase Precipitates and Dispersoid Particles in 2024 Aluminum Alloy after Different Aging Treatments

机译:不同时效处理后2024铝合金中第二相沉淀和弥散颗粒的研究

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摘要

Aluminum alloys such as AA2024 are popular in the automotive and aircraft industries. The application of artificial aging significantly improves their mechanical properties by precipitation hardening. However, commercial alloys very often contain different amounts of elements such as Si and Fe that make the evolution of the microstructure harder to control. Large intermetallic particles can influence the overall results of heat treatment and cause deterioration of material properties. The authors decided to examine changes in the microstructure of three commercial 2024 alloys with varying chemical compositions by applying three different types of aging treatments. The results show considerable differences in the amount, size and morphologies of the precipitates. Second-phase Al Cu and Al CuMg precipitates were identified in one of the alloys. Other interesting types of multiphase particles were discovered in alloys with higher Si contents. The results show that even small variations in the composition can lead to a completely different microstructure.
机译:诸如AA2024之类的铝合金在汽车和飞机行业中很流行。人工时效的应用通过沉淀硬化显着改善了它们的机械性能。然而,商业合金通常包含不同数量的元素,例如Si和Fe,这使得难以控制微观结构的演变。大的金属间化合物颗粒会影响热处理的整体效果,并导致材料性能下降。作者决定通过应用三种不同类型的时效处理来研究三种化学成分不同的商品2024合金的微观结构变化。结果表明,沉淀物的数量,大小和形态存在很大差异。在其中一种合金中发现了第二相Al Cu和Al CuMg沉淀。在硅含量较高的合金中发现了其他有趣的多相颗粒类型。结果表明,即使成分的微小变化也可以导致完全不同的微观结构。

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