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首页> 外文期刊>Journal of intelligent material systems and structures >A new imaging approach for in situ and ex situ inspections of conductive fiber-reinforced composites by magnetic induction tomography
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A new imaging approach for in situ and ex situ inspections of conductive fiber-reinforced composites by magnetic induction tomography

机译:磁感应断层成像技术对导电纤维增强复合材料进行原位和异位检查的新成像方法

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摘要

Fiber-reinforced plastics for industrial applications face constantly increasing demands regarding efficiency, reliability, and economy. Furthermore, it was shown that fiber-reinforced plastics with tailored reinforcements are superior to metallic or monolithic materials. However, a trustworthy description of the load-specific failure behavior and damage evolution of composite structures can hardly be given, because these processes are very complex and are still not entirely understood. Among other things, several research groups have shown that material damages like fiber fracture, delamination, matrix cracking, or flaws can be discovered by analyzing the electrical properties of conductive composites, for example, carbon fiber-reinforced plastics. Furthermore, it was shown that this method could be used for structural health monitoring or nondestructive evaluation. Within this study, magnetic induction tomography, which is a new imaging approach, is introduced in the topic of nondestructive evaluation of carbon fiber-reinforced plastics. This non-contacting imaging method gains the inner spatial distribution of conductivity of a specimen and depicts material inhomogeneity, like damages, not only in two-dimensional images but also in three-dimensional images. Numerical and experimental investigations are presented, which give a first impression of the performance of this technique. It is demonstrated that magnetic induction tomography is a promising approach for nondestructive evaluation. Potentially, it can be used for fabrication quality control of conductive fiber-reinforced plastics and as a structural health monitoring system using an integrated or superficially applied magnetic induction tomography setup.
机译:工业应用的纤维增强塑料面临着对效率,可靠性和经济性不断增长的需求。此外,结果表明,具有定制增强材料的纤维增强塑料优于金属或整体材料。但是,由于这些过程非常复杂并且仍未完全理解,因此很难给出可信赖的复合结构特定载荷破坏行为和损伤演变的描述。除其他事项外,几个研究小组已经表明,可以通过分析导电复合材料(例如碳纤维增强塑料)的电性能来发现材料损坏,例如纤维断裂,分层,基体开裂或缺陷。此外,结果表明,该方法可用于结构健康监测或无损评估。在这项研究中,磁感应断层扫描是一种新的成像方法,被引入到碳纤维增强塑料的无损评估主题中。这种非接触式成像方法获得了样品电导率的内部空间分布,并且不仅在二维图像中而且在三维图像中都描述了材料的不均匀性,如损伤。提出了数值和实验研究,这给人一种对这项技术的性能的第一印象。结果表明,磁感应断层扫描是一种有前途的无损评估方法。潜在地,它可以用于控制导电纤维增强塑料的制造质量,并可以用作使用集成或表面应用的磁感应断层扫描装置的结构健康监测系统。

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