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利用扫描电子显微镜中的冷却和加热技术对无扩散和扩散转变进行的研究。

Study of diffusionless and diffusional transformations using cooling and heating techniques in a scanning electron microscope.

作者信息

Kumar Deepak, Sarkar Rajdeep, Singh Vajinder, Kumar Suraj, Mondal Chandan, Ghosal P

机构信息

Defence Metallurgical Research Laboratory, Hyderabad 500 058, India.

出版信息

Philos Trans A Math Phys Eng Sci. 2020 Dec 11;378(2186):20200284. doi: 10.1098/rsta.2020.0284. Epub 2020 Oct 26.

Abstract

electron microscopy can be an effective tool to investigate the underlying science of many transformation mechanisms in materials science. Useful utilization of these experimentations will provide greater insight into many of the existing theories, as microstructural changes can be visualized in real time under some applied constraints. In this study, we have investigated two basic phase transformation phenomena: diffusionless and diffusional mechanisms with the help of cooling and heating techniques in scanning electron microscope (SEM). cooling experiments have been carried out on secondary hardening ultra-high-strength steels to understand the diffusionless transformation of austenite to martensite. Nucleation and growth of the martensites have been observed with cooling in different steps to -194°C. Details of the formation of different variants of martensites in steel were studied with the help of orientation imaging microscopy. Diffusional transformations were studied in terms of oxidation of pure copper in SEM using heating technique. Different heating cycles were adopted for different samples by heating to a maximum temperature of 950°C for the oxidation study. Nucleation of copper oxides and subsequent growth of the copper oxides at different temperatures were studied systematically. Raman spectroscopy and orientation imaging were done to confirm the formation of oxides and their orientations. The thermal cycling phenomenon was replicated inside SEM with heating and cooling and it has been demonstrated how the nature of copper and its oxides changes with the thermal cycle. This article is part of a discussion meeting issue 'Dynamic microscopy relating structure and function'.

摘要

电子显微镜可以成为研究材料科学中许多转变机制基础科学的有效工具。有效利用这些实验将能更深入地了解许多现有理论,因为在某些应用条件下可以实时观察到微观结构的变化。在本研究中,我们借助扫描电子显微镜(SEM)中的冷却和加热技术,研究了两种基本的相变现象:无扩散和扩散机制。对二次硬化超高强度钢进行了冷却实验,以了解奥氏体向马氏体的无扩散转变。在冷却至-194°C的不同步骤中观察到了马氏体的形核和生长。借助取向成像显微镜研究了钢中不同变体马氏体形成的细节。利用加热技术在SEM中研究了纯铜氧化方面的扩散转变。对不同样品采用不同的加热循环,加热至最高温度950°C进行氧化研究。系统地研究了不同温度下氧化铜的形核及随后的生长情况。进行了拉曼光谱和取向成像以确认氧化物的形成及其取向。通过加热和冷却在SEM内部重现了热循环现象,并展示了铜及其氧化物的性质如何随热循环而变化。本文是“结构与功能相关的动态显微镜”讨论会议论文集的一部分。

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