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Experimental strain sensitivity investigations on embedded PZT patches in varying orientations

机译:嵌入式PZT贴片在不同方向上的实验应变敏感性研究

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Piezoelectric ceramic (PZT) patches are well established as dynamic strain sensors. Thin Lead Zirconate Titanate (PZT) patches have been used as strain sensors in the present study in various configurations. The property of PZT i.e. generating voltage on application of strain also works conversely, i.e. they also develop strains on applying a voltage across their ends. It is well known that thin PZT patches, operating in d_(31) -mode i.e. response is measured across the poling direction (dir-3) and strain is applied along longitudinal direction (dir-1) serves best for strain sensing, whereas d_(33) -mode, i.e. both response and application of strain are measured across the poling direction is best for energy harvesting. In this study, PZT patches were tested for their responses while embedded in host structure in three different configurations i.e. horizontal (0°), vertical (90°) and inclined (45°) after embedding in a prototype RC beam, 150×210×2000mm in size. The results show that the 90° configuration is the best and 45° configuration is worst from strain sensing point of view.
机译:压电陶瓷(PZT)贴片已经很好地用作动态应变传感器。在本研究中,锆钛酸铅薄铅(PZT)贴片已在各种配置中用作应变传感器。相反,PZT的特性(即在施加应变时产生电压)也相反,即,在两端施加电压时,它们也会产生应变。众所周知,以d_(31)模式运行的薄PZT贴片,即在极化方向(dir-3)上测量响应,并沿纵向(dir-1)施加应变最适合应变检测,而d_ (33)-模式,即沿极化方向测量应变的响应和施加都最适合能量收集。在这项研究中,当将PZT贴片嵌入到150×210×RC原型梁中后,以三种不同的配置(即水平(0°),垂直(90°)和倾斜(45°))嵌入宿主结构中时测试了PZT贴片的响应。尺寸为2000毫米。结果表明,从应变感测的角度来看,90°配置是最好的,而45°配置是最差的。

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