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Analysis of non-destructive testing of three-dimensional braided composites using scanning SQUID NDT

机译:使用扫描SQUID NDT分析三维编织复合材料的无损检测

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The aim of this study is to provide an adequate understanding of the damage mechanism of three-dimensional braided composites based on offline measurements using the superconducting quantum interference device (SQUID) technique. This paper presents research into SQUID flux imaging for 3D braided composites under impact energy. Experimental results show that SQUID flux imaging can be considered as a suitable technique to detect defects of three-dimensional (3D) braided composites subjected to different energy impacts. When the deformation degenerates into internal cracking, the magnetic field signals decrease. The method provides an accurate calculation of the location of defects. The method will not only locate a defect, but can also be used for determining the internal characteristics of 3D braided composites, such as the braiding fibre orientation. Compared with the ultrasonic testing technique, the SQUID method is a more suitable non-destructive testing technique for 3D composite materials. This study shows that the SQUID testing technique is an effective tool for inspecting the state-of-failure of 3D braided composites.
机译:这项研究的目的是基于使用超导量子干涉仪(SQUID)技术的离线测量结果,对三维编织复合材料的损伤机理有足够的了解。本文介绍了在冲击能量下用于3D编织复合材料的SQUID通量成像的研究。实验结果表明,SQUID通量成像可以被认为是检测受到不同能量影响的三维(3D)编织复合材料缺陷的合适技术。当变形退化为内部裂纹时,磁场信号会减小。该方法提供了缺陷位置的精确计算。该方法不仅可以定位缺陷,还可以用于确定3D编织复合材料的内部特性,例如编织纤维的方向。与超声测试技术相比,SQUID方法是一种更适合3D复合材料的无损测试技术。这项研究表明,SQUID测试技术是检查3D编织复合材料失效状态的有效工具。

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