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Advanced Methods of Nondestructive Inspection of Composite Structures Based on Limited Angle X-Ray Computed Tomography

机译:基于有限角X射线计算机断层扫描的复合结构无损检测的先进方法

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摘要

This research aimed to study the potential for breaking through object size limitations of current X-ray computed tomography (CT) systems by implementing a limited angle scanning technique. CT stands out among other industrial nondestructive inspection (NDI) methods due to its unique ability to perform 3D volumetric inspection, unmatched micro-focus resolution, and objectivity that allows for automated result interpretation. This work attempts to advance NDI technique to enable microstructural material characterization and structural diagnostics of composite structures, where object sizes often prohibit the application of full 360° CT. Even in situations where the objects can be accommodated within existing micro-CT configuration, achieving sufficient magnification along with full rotation may not be viable.;An effort was therefore made to achieve high-resolution scans from projection datasets with limited angular coverage (less than 180°) by developing effective reconstruction algorithms in conjunction with robust scan acquisition procedures. Internal features of inspected objects barely distinguishable in a 2D X-ray radiograph can be enhanced by additional projections that are reconstructed to a stack of slices, dramatically improving depth perception, a technique referred to as digital tomosynthesis. Building on the success of state-of-the-art medical tomosynthesis systems, this work sought to explore the feasibility of this technique for composite structures in aerospace applications. The challenge lies in the fact that the slices generated in medical tomosynthesis are too thick for relevant industrial applications.;In order to adapt this concept to composite structures, reconstruction algorithms were expanded by implementation of optimized iterative stochastic methods (capable of reducing noise and refining scan quality) which resulted in better depth perception. The optimal scan acquisition procedure paired with the improved reconstruction algorithm facilitated higher in-plane and depth resolution compared to the clinical application. The developed limited angle tomography technique was demonstrated to be able to detect practically significant manufacturing defects (voids) and structural damage (delaminations) critical to structural integrity of composite parts. Keeping in mind the intended real-world aerospace applications where objects often have virtually unlimited in-plane dimensions, the developed technique of partial scanning could potentially extend the versatility of CT-based inspection and enable game changing NDI systems.
机译:这项研究旨在研究通过实施有限角度扫描技术突破当前X射线计算机断层扫描(CT)系统的物体尺寸限制的潜力。 CT在其他工业无损检测(NDI)方法中脱颖而出,因为它具有执行3D体积检测,无与伦比的微焦点分辨率和可自动解释结果的客观性的独特能力。这项工作试图改进NDI技术,以实现复合结构的微结构材料表征和结构诊断,其中对象尺寸通常会禁止使用完整的360°CT。即使在可以将对象容纳在现有micro-CT配置中的情况下,也无法实现足够的放大倍率以及完整旋转。;因此,人们努力从有限角度覆盖范围(小于结合强大的扫描采集程序开发有效的重建算法,从而获得180°的分辨率)。在二维X射线射线照相中几乎无法区分的被检物体的内部特征可以通过将额外的投影重建为一叠切片来增强,从而显着改善深度感知,这是一种称为数字断层合成的技术。在成功实现最先进的医学断层合成系统的基础上,这项工作试图探索该技术在航空航天应用中用于复合结构的可行性。挑战在于,医学断层合成中产生的切片对于相关的工业应用而言太厚。;为了使这一概念适应复合结构,通过实施优化的迭代随机方法(能够降低噪声并提纯)来扩展重构算法。扫描质量)可带来更好的深度感知。与临床应用相比,最佳扫描采集程序与改进的重建算法配合使用有助于实现更高的面内分辨率和深度分辨率。事实证明,开发的有限角度层析成像技术能够检测出对复合材料部件的结构完整性至关重要的实际重大制造缺陷(空隙)和结构损坏(分层)。考虑到实际的航空航天应用的目标,即物体通常实际上具有无限的平面尺寸,因此开发的局部扫描技术可能会扩展基于CT的检查的多功能性,并能够改变游戏规则的NDI系统。

著录项

  • 作者

    Bostaph, Ekaterina.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Aerospace engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:39:22

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