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3D 可打印压电复合传感器用于声适配导超声波检测。

3D-Printable Piezoelectric Composite Sensors for Acoustically Adapted Guided Ultrasonic Wave Detection.

机构信息

Institute of Mechanics and Adaptronics, Technische Universität Braunschweig, 38106 Braunschweig, Germany.

出版信息

Sensors (Basel). 2022 Sep 14;22(18):6964. doi: 10.3390/s22186964.

Abstract

Commercially available photopolymer resins can be combined with lead zirconate titanate (PZT) micrometer size piezoelectric particles to form 3D-printable suspensions that solidify under UV light. This in turn makes it possible to realize various non-standard sensor geometries which might bring benefits, such as increased piezoelectric output in specific conditions and less interference with incoming waves due to better acoustical adaptation compared to solid PZT ceramics. However, it is unclear whether piezoelectric composite materials are suitable for guided ultrasonic wave (GUW) detection, which is crucial for structural health monitoring (SHM) in different applications. In this study, thin piezoelectric composite sensors are tape casted, solidified under UV light, covered with electrodes, polarized in a high electric field and adhesively bonded onto an isotropic aluminum waveguide. This approach helps to demonstrate the capabilities of tape casting's freedom to manufacture geometrically differently shaped, thin piezoelectric composite sensors for GUW detection. In an experimental study, thin two-dimensional piezoelectric composite sensors demonstrate successful detection of GUW for frequency-thickness products of up to 0.5 MHz mm. An analytical calculation of the maximum and minimum amplitudes for the ratio of the wavelength and the sensor length in wave propagation direction shows good agreement with the sensor-recorded signals. The output of the piezoelectric composite sensors and occurring reflections as measure for wave interactions are compared to commercial piezoelectric discs to evaluate their performance.

摘要

市售光聚合树脂可与锆钛酸铅(PZT)微尺寸压电颗粒结合,形成可在紫外光下固化的 3D 打印悬浮液。这反过来又使得实现各种非标准传感器几何形状成为可能,这些形状可能带来一些好处,例如在特定条件下增加压电输出,以及与固体 PZT 陶瓷相比,由于更好的声学适应性而减少对入射波的干扰。然而,目前尚不清楚压电复合材料是否适合导波超声(GUW)检测,这对于不同应用中的结构健康监测(SHM)至关重要。在这项研究中,采用带式铸造法制备了薄的压电复合材料传感器,然后通过紫外光固化,用电极覆盖,在高电场中极化,并粘接到各向同性的铝波导上。这种方法有助于展示带式铸造的自由制造不同形状、用于 GUW 检测的薄型压电复合材料传感器的能力。在一项实验研究中,薄的二维压电复合材料传感器成功地检测到了频率-厚度乘积高达 0.5 MHz mm 的 GUW。在波传播方向上,对波长与传感器长度之比的最大和最小幅度的分析计算与传感器记录的信号吻合较好。将压电复合材料传感器的输出和发生的反射作为波相互作用的测量值与商用压电圆盘进行了比较,以评估它们的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52ed/9505420/7e4a2c47fe0d/sensors-22-06964-g001.jpg

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