Non-destructive testing of fiber-reinforced composites by terahertz method

P. Hłosta, M. Strąg, W. Świderski
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Abstract

Fiber-reinforced composites are materials that are increasingly replacing metals in many construction solutions. Damage to the composite structure may occur both as a result of technological errors in the production phase and during operation as material fatigue or as a result of an impact by a foreign body. The specificity of defects that occur in fiberreinforced composites results in the development of non-destructive testing methods that enable the detection of these defects. One of these methods is the use of terahertz radiation. Terahertz radiation penetrates well through non-metallic materials. It can therefore be used for non-destructive testing, especially of composites reinforced with glass and aramid fibers. The terahertz band has been known for many years, but interest in the use of terahertz radiation in non-destructive testing has only recently emerged. This is due, among others, to the availability of sources of terahertz radiation of appropriate power enabling these tests. The radiation source is an important element of nondestructive testing with active methods that are most often used in this type of testing. In non-destructive testing, the terahertz radiation range from 100 GHz to 300 GHz is most often used. In this paper we present the results obtained using the transmission terahertz method.
纤维增强复合材料的太赫兹法无损检测
纤维增强复合材料在许多建筑解决方案中越来越多地取代金属。复合材料结构的损坏既可能是由于生产阶段的技术错误,也可能是由于材料疲劳或由于异物的撞击而造成的。纤维增强复合材料中缺陷的特殊性导致了无损检测方法的发展,从而能够检测到这些缺陷。其中一种方法是使用太赫兹辐射。太赫兹辐射能很好地穿透非金属材料。因此,它可以用于无损检测,特别是用玻璃和芳纶纤维增强的复合材料。太赫兹波段已为人所知多年,但在无损检测中使用太赫兹辐射的兴趣直到最近才出现。除其他外,这是由于有适当功率的太赫兹辐射源可以进行这些试验。辐射源是无损检测中最常用的主动检测方法的重要组成部分。在无损检测中,最常用的是100 GHz到300 GHz的太赫兹辐射范围。本文给出了用传输太赫兹方法得到的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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