原子探针层析成像和透射电镜分析AA2195中的析出

M. Khushaim
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引用次数: 2

摘要

运输行业一直在努力实现最小的重量,以减少燃料消耗和提高整体性能。不同的创新设计策略已被放置和指导,以减轻重量,并结合良好的力学性能。在各种材料中,铝基合金因其重量轻、机械性能优越而在现代工程中发挥着关键作用,广泛应用于建筑构件中。引入不同的纳米结构特征可以提高合金的使用性能和物理性能。本研究选择了AA2195合金,并采用透射电镜和原子探针层析成像对其进行了表征。定量化学分析表明,在试样上施加轧制变形使T1(Al2CuLi)和θ′(Al2Cu)等不同的血小板析出物均匀分布,提高了合金的硬化性能。在这类合金上应用塑性变形已成为处理微观组织中第二相析出的重要工程工具。在本研究中,通过应用低能耗、高性价比的方法,将表征分析的结果转化为具有优异硬度行为(硬度值为209 HV)的坚固微观结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Precipitation in AA2195 by Atom Probe Tomography and Transmission Electron Microscopy
The transportation industries are constantly striving to achieve minimum weight to cut fuel consumption and improve overall performance. Different innovative design strategies have been placed and directed toward weight saving combined with good mechanical behavior. Among different materials, aluminum-based alloys play a key role in modern engineering and are widely used in construction components because of their lightweight and superior mechanical properties. Introduction of different nanostructure features can improve the service and the physical properties of such alloys. In this study, alloy AA2195 has been selected and characterized by means of transmission electron microscopy and atom probe tomography. Quantitative chemical analyses reveal that applying the rolling deformation on the specimen causes the uniform distribution of different platelet precipitates such as T1(Al2CuLi) and θ′(Al2Cu), which increases the hardening behavior of such alloys. Applying a plastic deformation on such alloys has been highlighted as an important engineering tool for the manipulation with second-phase precipitates in the microstructure. In this study, the findings of the characterization analysis were translated to construct a robust microstructure with an excellent hardness behavior (hardness value of 209 HV) by applying a low-energy consumption, cost-effective method.
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