Study on reinforcement and repair of cracked piezoelectric materials

S. Hong, M. S. Woo, D. Song, C. Yang, K. H. Baek, T. Sung
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引用次数: 2

Abstract

This study investigated the effects of strain and crack formation on the performance of piezoelectric materials as well as methods to repair damaged electrodes and reinforce the piezoelectric material. Specifically, this study investigated whether Ag paste (thickness: 0.1 mm) could restore electrical contact in damaged electrodes, and whether a coating of UV curable resin could provide reinforcement against crack formation. Experiments were conducted with a piezoelectric material on a steel cantilever substrate. The substrate was subjected to impact at various distances from the free end of the piezoelectric material to vary the applied strain. It was found that the output voltage increased with the strain (distance of impact from free end) until crack formation, which led to a large decrease in output. However, Ag paste could successfully restore electrical contact. Furthermore, before crack formation, coating with UV curable resin increased the maximum strain, and therefore, maximum electrical output, as well as cycle life.
裂纹压电材料的加固与修复研究
本文研究了应变和裂纹形成对压电材料性能的影响,以及修复电极损伤和增强压电材料的方法。具体来说,本研究调查了银膏(厚度:0.1 mm)是否可以恢复受损电极的电接触,以及UV固化树脂涂层是否可以提供防止裂纹形成的增强。用压电材料在钢悬臂基板上进行了实验。衬底受到来自压电材料自由端不同距离的冲击,以改变施加的应变。结果表明,输出电压随着应变(冲击距离自由端)的增大而增大,直至裂纹形成,导致输出电压大幅度下降。然而,银浆可以成功地恢复电接触。此外,在裂缝形成之前,涂有UV固化树脂的涂层增加了最大应变,从而增加了最大电输出,以及循环寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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