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Non-destructive testing of jute-polypropylene composite using frequency-modulated thermal wave imaging

机译:调频热波成像技术对黄麻-聚丙烯复合材料的无损检测

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摘要

A recently developed frequency-modulated thermal wave imaging (FMTWI) has been applied for subsurface defect detection of jute fibre-reinforced polypropylene (PP) matrix composite. Composites are subject to manufacturing and in-service defects like voids, delamination, cracks and so on. Active thermography like lock-in thermography (LT) and pulsed thermography (PT) has been widely used for non-destructive testing of composites and laminates. FMTWI may be viewed as a superposed LT, wherein multiple frequency response is obtained through single measurement. It is very much suitable for newly developed material for which the thermal properties are not well established, thereby impeding the choice of appropriate frequency for conventional LT. In this article, FMTWI is applied to detect and characterize artificially generated subsurface defects in jute-PP composite. The measurements also show the effect of frequency on the depth of defect detection and accuracy.
机译:最近开发的调频热波成像(FMTWI)已用于黄麻纤维增强聚丙烯(PP)基复合材料的地下缺陷检测。复合材料易受制造和使用中缺陷的影响,例如孔隙,分层,裂纹等。主动热成像(如锁定热成像(LT)和脉冲热成像(PT))已广泛用于复合材料和层压板的无损检测。 FMTWI可以看作是叠加的LT,其中通过单次测量可获得多个频率响应。它非常适合于热性能不佳的新开发材料,从而阻碍了传统LT的合适频率的选择。在本文中,FMTWI用于检测和表征黄麻-PP复合材料中人为产生的表面缺陷。测量结果还显示了频率对缺陷检测深度和准确性的影响。

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