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Piezoelectric paint: Ceramic-polymer composites for vibration sensors

机译:压电涂料:用于振动传感器的陶瓷-聚合物复合材料

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A piezoelectric ceramic-polymer composite has been developed for use as a novel thick film strain sensor for vibration monitoring of structures. The material is in the form of a paint that can be applied to a wide range of substrates using conventional spraying equipment. The sensor properties depend on the morphology of the composite and on the electrodes that are used to couple it to the charge amplifier. Electrodes of various kinds have been tested. Interaction between the electrode and the piezoelectric paint sometimes occurs ( for example, the organic vehicle for spray-coated electrodes may interact with the paint binder). The morphologies of the piezoelectric paint and of the electrode materials have been studied using light optical microscopy and scanning electron microscopy to investigate the effect of different compositions and of different processing conditions ( e. g., paint mixing schedule). Preliminary work is reported on the characteristics of the piezoelectric particles and on the effect of heat treatment applied to anneal out defects produced by milling. X-ray analysis and particle size analysis have been used to characterize the changes that take place on heat treatment. X-ray diffractometry has also been used to follow the effect of poling on the paint sensors. At the present state of development, sensors made using the paint have a dynamic range of at least 40 - 4000 microstrain and a bandwidth of at least 1 Hz - 2 kHz, and piezoelectric coefficient d(31) of approximately 20 pC/N. The sensors are resistant to outdoor exposure and a successful field trial has been conducted. (C) 2004 Kluwer Academic Publishers.
机译:已经开发出压电陶瓷-聚合物复合材料,用作用于结构振动监测的新型厚膜应变传感器。该材料为油漆形式,可以使用常规喷涂设备将其应用于多种基材。传感器的性能取决于复合材料的形态以及用于将其耦合到电荷放大器的电极。已经测试了各种电极。有时会在电极和压电涂料之间发生相互作用(例如,用于喷涂电极的有机载体可能会与涂料粘合剂相互作用)。已经使用光学显微镜和扫描电子显微镜研究了压电涂料和电极材料的形貌,以研究不同组成和不同加工条件(例如,涂料混合时间表)的影响。据报道,有关压电颗粒的特性以及热处理对退火产生的缺陷进行退火的效果的初步工作。 X射线分析和粒度分析已用于表征热处理过程中发生的变化。 X射线衍射仪也已用于跟踪极化对涂料传感器的影响。在目前的发展状态下,使用涂料制成的传感器的动态范围至少为40-4000微应变,带宽至少为1 Hz-2 kHz,压电系数d(31)约为20 pC / N。这些传感器具有抵抗室外暴露的能力,并且已经成功进行了现场试验。 (C)2004 Kluwer学术出版社。

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