θ' -> stable θ, is of academic importance. In situ synchrotron small-angle X-ra'/> Phase transformation and precipitation of an Al-Cu alloy during non-isothermal heating studied by in situ small-angle and wide-angle scattering
首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Phase transformation and precipitation of an Al-Cu alloy during non-isothermal heating studied by in situ small-angle and wide-angle scattering
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Phase transformation and precipitation of an Al-Cu alloy during non-isothermal heating studied by in situ small-angle and wide-angle scattering

机译:原位小角和广角散射研究Al-Cu合金在非等温加热过程中的相变和析出

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摘要

Understanding the classic precipitation sequence of Al-Cu alloys, solid solution -> Guinier-Preston (GP) zones -> θ" -> θ' -> stable θ, is of academic importance. In situ synchrotron small-angle X-ray scattering (SAXS) and wide-angle X-ray scattering (WAXS) techniques were employed simultaneously to study the temperature-dependent behavior of various intermediate precipitation steps in the non-isothermal heating of Al-5.4 wt%Cu alloy. This study quantitatively demonstrates the concurrent evolution of the lattice structure, volume fraction (growth and dissolution) and structural growth in the thickness and length directions with temperature for various intermediate (metastable) precipitates for the first time. The detailed phase transformation mechanism and structural evolution in the precipitation sequence (for GP zones, θ", θ' and θ phases) can then be resolved. Our data analysis also considered the concurrent existence of multiple precipitates in the precipitation sequence. Moreover, the evolutional behavior of the orientation of precipitates in each precipitation step can be concurrently revealed. Different SAXS analysis models were proposed to successfully interpret the SAXS data. The new information presented by the SAXS/WAXS approach provides insight into the phase transformation mechanism of precipitation in Al-Cu alloys.
机译:了解Al-Cu合金的经典析出顺序,固溶-> Guinier-Preston(GP)区->θ“->θ'->稳定θ具有学术意义。原位同步加速器小角X射线散射(SAXS)和广角X射线散射(WAXS)技术同时用​​于研究Al-5.4 wt%Cu合金非等温加热中各个中间沉淀步骤的温度依赖性行为,该研究定量地证明了各种中间(易变)析出物的晶格结构,体积分数(增长和溶解)以及厚度和长度方向上的结构增长随温度的同时演化。详细的相变机理和析出顺序中的结构演化(对于GP区域,则可以解析θ“,θ'和θ相位。我们的数据分析还考虑了降水序列中同时存在多个降水。此外,可以同时揭示每个沉淀步骤中沉淀取向的演化行为。提出了不同的SAXS分析模型来成功解释SAXS数据。 SAXS / WAXS方法提供的新信息提供了对Al-Cu合金中沉淀相变机理的见解。

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