Dual Beam microfocus high-energy tomography: Towards multimodal and faster laboratory experiments

Eric Maire , Gabriel Bonnard , Jérôme Adrien , Xavier Boulnat , Jean Michel Létang , Joël Lachambre
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Abstract

This paper discusses the development of a Dual Beam microfocus high-energy X-ray tomography system for laboratory experiments, aiming to enhance temporal resolution and multimodal capabilities. Initially, X-ray computed tomography (XRCT) in materials science, particularly using synchrotron sources, provided valuable insights into microstructures. Digital volume correlation (DVC) emerged as a tool for measuring displacement fields during in situ XRCT tests. High-speed XRCT became possible with synchrotrons, but laboratory devices still face limitations due to moderate X-ray flux. This paper describes the design and implementation of a new dual high-energy X-ray tomograph with two twin beamlines. The paper also covers the first in situ dual-beam experiment involving the in situ compression test of an aluminium foam sample. It discusses calculating DVC displacement fields from radiographs, comparing them to control tomographic scans, and assessing their quality. The paper explores the potential for deforming initial scans using DVC fields, both from radiographs and tomographic scans. The approach shows reasonable quantitative agreement with control scans but does not capture rotational motion along the vertical axis.

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双光束微聚焦高能断层扫描:实现多模态和更快的实验室实验
本文讨论了用于实验室实验的双光束微聚焦高能 X 射线断层成像系统的开发,旨在提高时间分辨率和多模态能力。最初,材料科学领域的 X 射线计算机断层扫描(XRCT),特别是使用同步辐射源的 X 射线计算机断层扫描,为微观结构提供了宝贵的见解。数字体积相关技术(DVC)作为一种工具出现,用于测量原位 XRCT 测试过程中的位移场。同步加速器使高速 XRCT 成为可能,但由于 X 射线通量适中,实验室设备仍面临限制。本文介绍了带有两条双光束线的新型双高能 X 射线层析成像仪的设计和实施。论文还介绍了首次原位双光束实验,涉及铝泡沫样品的原位压缩测试。论文讨论了从射线照片中计算 DVC 位移场、将其与对照断层扫描进行比较以及评估其质量等问题。论文探讨了利用 DVC 场对射线照片和断层扫描进行初始扫描的变形潜力。该方法与对照扫描显示出合理的定量一致性,但不能捕捉到沿垂直轴的旋转运动。
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