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SMART LAYER FOR DAMAGE DIAGNOSTICS

机译:损坏诊断的智能层

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摘要

In this research damage diagnostics is carried out by a novel design of a smart layer that consists of piezoelectric films. This thin layer is attached to the structure being monitored. First, some fundamental investigations are carried out in order to examine the influence of the thickness of the film, the influence of different adhesives and the influence of the couplant. The wave field generated by the smart layer propagates into a solid. The directional dependency is investigated. Moreover, an improved type of polyvinylidene fluoride (PVDF) copolymer is presented and investigated for the potential application in the field of structural health monitoring. The use of this PVDF copolymer makes the manufacturing process of a self-sensing actuating layer in ultrasonics much easier than conventional PVDF films since the piezoelectric film is directly sputtered onto the surface of a metallic specimen or onto a metallic layer. This smart layer technique is a valuable tool for identifying the location and size of cracks and delaminations in composites as well as for determining local material thicknesses which might occur due to corrosion. It can be applied in order to monitor so called 'hot spots' on new structures as well as on already existing structures. The application of the smart layer is demonstrated on a plate-like structure containing a damage. The identified damage corresponds well with the actual damage.
机译:在这项研究中,损坏诊断是通过对由压电膜组成的智能层的新颖设计进行的。此薄层连接到要监视的结构。首先,进行了一些基础研究,以检查薄膜厚度的影响,不同粘合剂的影响和耦合剂的影响。智能层产生的波场传播到固体中。研究方向依赖性。此外,提出了一种改进类型的聚偏二氟乙烯(PVDF)共聚物,并进行了研究,以用于结构健康监测领域。该PVDF共聚物的使用使得超声中的自感应致动层的制造过程比常规PVDF膜容易得多,这是因为压电膜被直接溅射到金属样本的表面或金属层上。这种智能层技术是一种有价值的工具,可用于识别复合材料中裂纹和分层的位置和大小以及确定由于腐蚀而可能出现的局部材料厚度。可以应用它来监视新结构以及现有结构上的所谓“热点”。在具有损坏的板状结构上演示了智能层的应用。识别出的损坏与实际损坏非常吻合。

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