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Imaging defects in laminate composite plates using focused shear waves generated by air-coupled transducer

机译:利用空气耦合换能器产生的聚焦剪切波成像层压复合板中的缺陷

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摘要

This research develops a nondestructive evaluation (NDE) technique to obtain images of two types of defects, delamination and debonding, in a thick laminate composite plate as a laboratory material system for wind turbine blades. The technique uses focused shear waves which are generated and detected by a set of noncontact, air-coupled ultrasonic transducers. The noncontact nature of the air-coupled method facilitates rapid scanning/inspection of large composite structures. Ray-tracing simulations are performed which visualize the focusing behavior of the focused shear waves in the specimen, from which the experimental parameters are determined. The proposed focused shear wave technique is compared with a Lamb-wave based technique, showing that the present technique is more appropriate for direct imaging of these defects. The obtained images of delamination and debonding defects agree well with the estimated defect locations and dimensions. This demonstrates the feasibility of further developing the present technique for specific field applications in wind turbine blades. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究开发了一种无损评估(NDE)技术,可在厚的层压复合板中作为风力涡轮机叶片的实验室材料系统,获得两种类型的缺陷(分层和脱胶)的图像。该技术使用聚焦的剪切波,这些剪切波是由一组非接触式,空气耦合的超声换能器生成和检测的。空气耦合方法的非接触性质有利于大型复合结构的快速扫描/检查。进行射线追踪模拟,以可视化样本中聚焦剪切波的聚焦行为,从而确定实验参数。提出的聚焦剪切波技术与基于Lamb-wave的技术进行了比较,表明本技术更适合于这些缺陷的直接成像。所获得的分层和剥离缺陷的图像与估计的缺陷位置和尺寸非常吻合。这证明了进一步开发用于风力涡轮机叶片中的特定现场应用的本技术的可行性。 (C)2016 Elsevier Ltd.保留所有权利。

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