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Development of piezoelectric thick-film sensors to be embedded into adhesively bonded joints

机译:压电厚膜传感器的开发,将其嵌入粘合接头中

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摘要

Techniques have been developed for making a unique type of piezoelectric thick-film strain sensor in the form of a 'piezoelectric adhesive' to be embedded into a bonded joint. Lead zirconate titanate (PZT) powder is used as the active ingredient of the piezoelectric composite and epoxy resin as the matrix. The sensors have been fully characterised (i.e. type of piezoelectric powder, the surface area of the sensor, its thickness, weight fraction and the poling field) through an extensive testing programme in order to determine the optimum formulation for enhancing the sensitivity of the sensor. One of the main challenges was to effectively incorporate those sensors into the adhesive layer of a lap joint without greatly affecting the joint's mechanical properties. This application would allow the direct measurement of the stress field in a joint along the bond area, aiming at the optimisation of the adhesively bonded joint design as well as serving as an in-service structural health monitoring device. In the present work, the sensors were tested using the dynamic four-point bending test and preliminary results demonstrate the feasibility of this approach, achieving a satisfactory performance of the piezoelectric sensors applied on a metal substrate.
机译:已经开发出用于制造独特类型的压电厚膜应变传感器的技术,该传感器以“压电粘合剂”的形式嵌入到结合的接头中。锆酸钛酸铅(PZT)粉被用作压电复合材料的活性成分,环氧树脂被用作基质。通过广泛的测试程序对传感器进行了全面表征(即压电粉末的类型,传感器的表面积,其厚度,重量分数和极化场),以便确定用于增强传感器灵敏度的最佳配方。主要挑战之一是将这些传感器有效地结合到搭接的胶粘剂层中,而不会大大影响接头的机械性能。此应用程序将允许直接测量沿粘结区域的接头中的应力场,旨在优化粘结接头的设计,并用作服务中的结构健康监测设备。在目前的工作中,使用动态四点弯曲测试对传感器进行了测试,初步结果证明了该方法的可行性,从而实现了应用于金属基板上的压电传感器的令人满意的性能。

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