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Damage detection in laminated composites using pure SH guided wave excited by angle beam transducer

机译:角束换能器激发的纯SH导波在层合复合材料中的损伤检测

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Carbon fiber reinforced polymer (CFRP) composites have been widely used in aerospace structures due to their high specific strength and stiffness, resistance to corrosion, and lightweight. However, it has posed new challenges for implementing guided wave-based structural health monitoring (SHM) techniques due to the general anisotropic behavior and complicated wave-damage interaction scenarios in composites. This paper presents a new methodology for detecting various types of composite damage such as simulated delamination and actual impact damage using pure shear horizontal (SH) wave generated by adjustable angle beam transducers. For the first time, angle beam transducers were successfully applied to excite pure SHO wave in a 2-mm quasi-isotropic composite plate. The pure SHO wave excitation was verified by a three-dimensional (3D) finite element (FE) simulation. SHO wave propagation and interaction with the delamination were further investigated numerically and strong trapped waves within the delamination region were observed. Experimental validations were conducted to detect simulated delamination by Teflon insert using pure SHO wave. A good match between the FE simulation and the experiment was achieved. Pure SHO wave was also utilized to detect actual impact damage in the quasi-isotropic CFRP composite plate. It can be found that the SHO wave is sensitive to both delamination and impact damage, and a significant amplitude drop is observed due to the presence of different types of damage. Both numerical and experimental results demonstrated the effectiveness of pure SHO-wave detection of various damage types in composites using angle beam transducers.
机译:碳纤维增强聚合物(CFRP)复合材料因其高比强度和刚度,耐腐蚀性和轻质性而被广泛用于航空航天结构。然而,由于复合材料的一般各向异性行为和复杂的波浪-损伤相互作用情况,它对实施基于导波的结构健康监测(SHM)技术提出了新的挑战。本文提出了一种新方法,该方法可以使用可调节角度波束传感器产生的纯剪切水平(SH)波来检测各种类型的复合损伤,例如模拟分层和实际冲击损伤。首次成功地将角波束传感器应用于2 mm准各向同性复合材料板中的纯SHO波的激发。通过三维(3D)有限元(FE)模拟验证了纯SHO波的激发。进一步数值研究了SHO波的传播以及与分层的相互作用,并观察到分层区域内的强捕获波。进行了实验验证,以使用纯SHO波检测特氟隆插件的模拟分层。有限元模拟和实验之间实现了良好的匹配。纯SHO波还用于检测准各向同性CFRP复合板的实际冲击损伤。可以发现,SHO波对分层和冲击损伤都很敏感,并且由于存在不同类型的损伤,因此观察到明显的振幅下降。数值和实验结果均证明了使用角波束传感器对复合材料中各种损伤类型进行纯SHO波检测的有效性。

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