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首页> 外文期刊>Journal of intelligent material systems and structures >Initial study of internally embedded shear-mode piezoelectric transducers for the detection of joint defects in laminate structures
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Initial study of internally embedded shear-mode piezoelectric transducers for the detection of joint defects in laminate structures

机译:内置剪切模式压电换能器在层合结构中检测关节缺陷的初步研究

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摘要

There has been recent interest in embedding sensor networks into bondlines to create intelligent materials that can detect, report, and potentially respond to their state. This article presents an initial, large-scale investigation into embedding shear-mode (d(15)) lead zirconate titanate piezoelectric transducers into the bondline of laminate structures, near the centerline, for the ultrasonic detection of joint defects. The study included analysis of dispersion curves, multiphysics numerical simulations, and experimental results for an aluminum-epoxy-aluminum laminate structure. Analysis of the time of flight and displacement profiles confirmed that antisymmetric waves were generated and propagated through the structure. Simulations were performed for models containing disbonds, through-thickness cracks, and voids with experimental validation of a specimen containing a void to evaluate the effectiveness of d(15) lead zirconate titanates embedded in a bondline as actuators and sensors for damage detection. The results were examined by looking at the cross-sectional deformation in simulations, and the signal changes were evaluated by calculating the root mean square deviation damage index and inspecting attenuation and phase shift in pristine and damaged structures. It was found that the d(15) shear-mode lead zirconate titanates actuated and sensed antisymmetric waves that were sensitive to all types of damages considered.
机译:最近,人们对将传感器网络嵌入绑定线以创建可以检测,报告并可能对其状态做出响应的智能材料感兴趣。本文提出了对剪切模式(d(15))锆钛酸铅压电换能器嵌入到中心线附近的叠层结构结合线中的初步大规模研究,以超声检测接头缺陷。该研究包括色散曲线分析,多物理场数值模拟以及铝-环氧-铝层压板结构的实验结果。对飞行时间和位移曲线的分析证实,产生了不对称波并通过结构传播。对包含脱胶,贯穿厚度裂纹和空隙的模型进行了仿真,并对包含空隙的样品进行了实验验证,以评估嵌入在粘结层中的d(15)锆钛酸铅钛酸盐作为致动器和传感器以进行损伤检测的有效性。通过在仿真中查看横截面变形来检查结果,并通过计算均方根偏差损坏指数并检查原始和损坏结构的衰减和相移来评估信号变化。发现d(15)剪切模式锆钛酸铅钛酸盐可驱动并感应出对所考虑的所有类型的损伤均敏感的反对称波。

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