Correlative electron microscopy of discontinuous precipitation

IF 4.4 3区 工程技术 Q1 ENGINEERING, CIVIL
Jarosław Opara, Paweł Zięba
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Abstract

This paper presents a comprehensive study on discontinuous precipitation (DP) in Al-22 at.% Zn alloy, leveraging the correlative and synergic effects of advanced microscopy and modelling techniques. The study is structured into three pivotal steps: in-situ scanning electron microscopy combined with an energy backscattered diffraction analysis for real-time monitoring and an analysis of DP reaction kinetics and grain boundary misorientations; transmission electron microscopy and an energy X-ray dispersive microanalysis for detailed observation of solute-depleted α and solute-rich β lamellae, offering insights into the kinetics of the reaction front (RF) and solute concentration profiles; and a sophisticated modelling approach addressing the limitations of direct observation methods by simulating solute concentration changes within αphase lamellae during RF go-and-stop cycles. This multifaceted approach elucidates the nuances of DP mechanisms, from the nucleation and growth of precipitates to the estimation of instantaneous RF velocity and the impact of grain boundary misorientations. The integration of these methodologies enhances our understanding of DP kinetics and morphology at both meso- and nanoscales, highlighting the significant role of correlative microscopy in metallurgical research. The findings not only deepen our grasp of the fundamental mechanisms driving DP reactions but also provide a valuable comparison framework for experimental data, potentially guiding the development and optimization of metallurgical processes.

Abstract Image

不连续沉淀的相关电子显微镜分析
本文利用先进的显微镜和建模技术的相关性和协同效应,对 Al-22 含锌合金中的不连续沉淀 (DP) 进行了全面研究。研究分为三个关键步骤:原位扫描电子显微镜与能量反向散射衍射分析相结合,用于实时监测和分析 DP 反应动力学和晶界错位;透射电子显微镜和能量 X 射线色散显微分析,用于详细观察溶质贫化的 α 相薄片和溶质富集的 β 相薄片,从而深入了解反应前沿 (RF) 的动力学和溶质浓度分布;以及一种复杂的建模方法,通过模拟 RF 进进出出循环过程中 α 相薄片内的溶质浓度变化,解决直接观察方法的局限性。这种多方面的方法阐明了 DP 机制的细微差别,从沉淀物的成核和生长到射频瞬时速度的估算以及晶界错位的影响。这些方法的整合增强了我们对介观和纳米尺度的 DP 动力学和形态学的理解,凸显了相关显微镜在冶金研究中的重要作用。这些发现不仅加深了我们对驱动 DP 反应的基本机制的理解,还为实验数据提供了一个宝贵的比较框架,为冶金工艺的开发和优化提供了潜在的指导。
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来源期刊
Archives of Civil and Mechanical Engineering
Archives of Civil and Mechanical Engineering 工程技术-材料科学:综合
CiteScore
6.80
自引率
9.10%
发文量
201
审稿时长
4 months
期刊介绍: Archives of Civil and Mechanical Engineering (ACME) publishes both theoretical and experimental original research articles which explore or exploit new ideas and techniques in three main areas: structural engineering, mechanics of materials and materials science. The aim of the journal is to advance science related to structural engineering focusing on structures, machines and mechanical systems. The journal also promotes advancement in the area of mechanics of materials, by publishing most recent findings in elasticity, plasticity, rheology, fatigue and fracture mechanics. The third area the journal is concentrating on is materials science, with emphasis on metals, composites, etc., their structures and properties as well as methods of evaluation. In addition to research papers, the Editorial Board welcomes state-of-the-art reviews on specialized topics. All such articles have to be sent to the Editor-in-Chief before submission for pre-submission review process. Only articles approved by the Editor-in-Chief in pre-submission process can be submitted to the journal for further processing. Approval in pre-submission stage doesn''t guarantee acceptance for publication as all papers are subject to a regular referee procedure.
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