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通过X射线显微断层扫描对复合材料中的裂纹进行成像的不同方法的比较。

A comparison of different approaches for imaging cracks in composites by X-ray microtomography.

作者信息

Yu B, Bradley R S, Soutis C, Withers P J

机构信息

Henry Moseley X-ray Imaging Facility, School of Materials, University of Manchester, Manchester M13 9PL, UK.

Aerospace Research Institute, University of Manchester, Manchester M13 9PL, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2016 Jul 13;374(2071):20160037. doi: 10.1098/rsta.2016.0037.

Abstract

X-ray computed tomography (CT) has emerged as a key imaging tool in the characterization of materials, allowing three-dimensional visualization of an object non-destructively as well as enabling the monitoring of damage accumulation over time through time-lapse imaging. However, small defects and cracks can be difficult to detect, particularly in composite materials where low-contrast, plate-like geometries of large area can compromise detectability. Here, we investigate a number of strategies aimed at increasing the capability of X-ray CT to detect composite damage such as transverse ply cracking and delamination, looking specifically at a woven glass fibre-reinforced three-dimensional composite. High-resolution region of interest (ROI) scanning, in situ loading, phase contrast and contrast agents are examined systematically as strategies for improving the defect detectability. Spatial resolution, contrast, signal-to-noise ratio, full width at half maximum, user friendliness and measurement time are all considered. Taken together, the results suggest that high-resolution ROI scanning combined with the increased contrast resulting from staining give the highest defect detectability. This article is part of the themed issue 'Multiscale modelling of the structural integrity of composite materials'.

摘要

X射线计算机断层扫描(CT)已成为材料表征中的一种关键成像工具,它能够对物体进行无损三维可视化,还能通过延时成像监测损伤随时间的累积情况。然而,小缺陷和裂纹可能难以检测,尤其是在复合材料中,大面积低对比度、板状几何形状会影响检测能力。在此,我们研究了多种旨在提高X射线CT检测复合材料损伤(如横向层间开裂和分层)能力的策略,特别关注一种编织玻璃纤维增强三维复合材料。系统地研究了高分辨率感兴趣区域(ROI)扫描、原位加载、相衬成像和造影剂等作为提高缺陷检测能力的策略。同时考虑了空间分辨率、对比度、信噪比、半高宽、用户友好性和测量时间。综合来看,结果表明高分辨率ROI扫描与染色带来的对比度增加相结合,可实现最高的缺陷检测率。本文是主题为“复合材料结构完整性的多尺度建模”特刊的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11dc/4901256/d99432e387b6/rsta20160037-g1.jpg

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